UPSI Digital Repository (UDRep)
Start | FAQ | About
Menu Icon

QR Code Link :

Type :Thesis
Subject :QC Physics
Main Author :Nur Farah Nadia Abd Karim
Additional Authors :
  • -
Title :Optical, optomechanical and density functional theory modelling investigation of calixarene Langmuir-Blodgett thin film for drug encapsulation
Hits :51
Place of Production :Tanjong Malim
Publisher :Fakulti Sains dan Matematik
Year of Publication :2024
Original Version Note :-
Corporate Name :Perpustakaan Tuanku Bainun
PDF Guest :Click to view PDF file
PDF Full Text :You have no permission to view this item.

Abstract : Perpustakaan Tuanku Bainun
The research aim is to create a calixarene-based nanosensor targeting paraaminobenzoic acid (PABA) using Langmuir-Blodgett (LB) method. The properties of the LB film were assessed. The optical and optomechanical characteristics were examined with ultraviolet visible (UV-vis) spectroscopy and optical tweezers (OT). The host-guest binding energy was calculated using DFT method. Calix[4]arene (C4) and calix[8]arene (C8) solutions with concentration of 0.47 mM and 0.23 mM respectively, were prepared and different PABA concentrations (0.01 to 0.71 mM) was used to study the interactions. The thin films were optically analysed at wavelength of 250 to 400 nm. Microclusters with radii of 0.5-1.5 _m were optically trapped at various power density (0.23 to 2.49 MW/cm2). Complex_s binding energy were calculated using optimisation calculation. C4 and C8 monolayers effectively trapped PABA, resulting in 1:1 and 1:2 stoichiometry ratios. C8 was significantly more sensitive towards PABA, detecting even at 0.01 mM concentration while C4 was more stable owning to its higher collapse pressure, 60 mN/m. Both complex monolayers showed highest absorbance at 0.47 mM, aligning with Langmuir studies. C4-PABA_s band gap (4.0001 eV) is smaller than C4_s (4.0259 eV), and C8-PABA_s (4.2155 eV) is slightly smaller than C8_s (4.2205 eV) suggesting a potential interaction between the host and guest. OT effectively captured and differentiated between the host and host-guest microclusters, utilising the corner frequency, fc. The DFT method shows that C8 encapsulates PABA better than C4, as C8-PABA_s binding energy (-0.05031 Ry) is higher than that of C4-PABA (-0.00839 Ry). The DFT method shows that C8 encapsulates PABA better than C4, as C8-PABA_s binding energy (-0.05031 Ry) is higher than that of C4-PABA (-0.00839 Ry). The band gap from the DFT aligns with the Tauc plot, indicating that C8-PABA (2.6208 eV) is more thermodynamically stable than C4-PABA (2.4327 eV) due to its higher band gap. The calixarene nanosensor for PABA was developed using the LB method and the incorporation of PABA was confirmed. This research could lead to the development of PABA nanosensors that lessen PABA's skin impacts in medical and pharmaceutical applications.

References

Abbasi, M. A., Khan, W., Rehman, A. U., Siddiqui, S. Z., & Akhtar, Z. (2019).

Synthesis, characterization and sunscreen protection factor of novel synthesized

para amino benzoic acid (PABA) esters. Journal of the Chemical Society of

Pakistan, 41(4), 701–706.

 

Abd Karim, N. F. N. (2019). The Morphology and Structural Properties of Silicon

Carbide Quantum Dots Growth by Very High Frequency Plasma Enhanced

Chemical Vapour Deposition. Universiti Teknologi Malaysia.

 

Abd Karim, N. F. N., Supian, F. L., Musa, M., Ayop, S. K., Azmi, M. S. M., Yazid,

M. D., & Yi, W. Y. (2022). Calixarene Derivatives: A Mini-Review on their

Synthesis and Demands in Nanosensors and Biomedical Fields. Mini-Reviews in

Medicinal Chemistry, 23(6), 734–745.

https://doi.org/10.2174/1389557522666220928120727

 

Abdel-Karim, R., Reda, Y., & Abdel-Fattah, A. (2020). Review—Nanostructured

Materials-Based Nanosensors. Journal of The Electrochemical Society, 167(3),

037554. https://doi.org/10.1149/1945-7111/ab67aa

 

Abdul Aziz, S. F. N., & Ahmad, S. A. A. (2023). Electrochemical detection of

nickel(II) and zinc(II) ions by a dicarboxyl-Calix[4]arenebased sensor

(Calix/MPA/Au) through differential pulse voltammetry analysis. Aqua Water

Infrastructure, Ecosystems and Society, 72(2), 160–162.

https://doi.org/10.2166/aqua.2023.179

 

Abdullah, M. T., Raoof, L. M., Hasan, M. H., Abd, A. N., & Mohammed, I. M.

(2021). The Effect of Different Thickness on the Optical and Electrical

Properties of TiO2Thin Films. Journal of Physics: Conference Series, 1999(1).

https://doi.org/10.1088/1742-6596/1999/1/012128

 

Acikbas, Y., Bozkurt, S., Halay, E., Capan, R., Guloglu, M. L., Sirit, A., & Erdogan,

M. (2017). Fabrication and characterization of calix[4]arene Langmuir–Blodgett

thin film for gas sensing applications. Journal of Inclusion Phenomena and

Macrocyclic Chemistry, 89(1–2), 77–84. https://doi.org/10.1007/s10847-017-

0732-6

 

Acosta, E. (2021). Thin Films/Properties and Applications. In Thin Film. Intech Open.

https://www.intechopen.com/books/advanced-biometric-technologies/livenessdetection-

in-biometrics

 

Akash, M. S. H., & Rehman, K. (2019). Thermogravimetric analysis. In Essentials of

pharmaceutical analysis. Springer, Singapore. Chapter 19; 215-221. In Essentials

of Pharmaceutical Analysis.

 

Akberova, S. I. (2002). New Biological Properties of p -Aminobenzoic Acid. Biology

Bulletin of the Russian Academy of Sciences, 29(4), 390–393.

 

Akceylan, E., & Cagil, E. M. (2017). A new drug delivery system based on magnetic

calixarene nanoparticles. Journal of Bionanoscience, 11(5), 330–336.

https://doi.org/10.1166/jbns.2017.1469

 

Al-Alwani, A. J., Mironyuk, V. N., Pozharov, M. V., Gavrikov, M. V., & Glukhovskoy, E. G. (2022). Formation and phase behavior of

porphyrin/arachidic acid mixed systems and morphology study of Langmuir-

Schaefer thin films. Soft Materials, 20(3), 310–321.

https://doi.org/10.1080/1539445X.2022.2028829

 

Albrecht, O., & Sackmann, E. (1980). A precision Langmuir film balance measuring

system. Journal of Physics E: Scientific Instruments, 13(5), 512–515.

https://doi.org/10.1088/0022-3735/13/5/011

 

Ariga, K. (2020). Don’t Forget Langmuir-Blodgett Films 2020: Interfacial

Nanoarchitectonics with Molecules, Materials, and Living Objects. Langmuir,

36(26), 7158–7180. https://doi.org/10.1021/acs.langmuir.0c01044

 

Ariga, K., Yamauchi, Y., Mori, T., & Hill, J. P. (2013). 25th Anniversary article:

What can be done with the langmuir-blodgett method? Recent developments and

its critical role in materials science. Advanced Materials, 25(45), 6477–6512.

https://doi.org/10.1002/adma.201302283

 

Arita, Y., Tkachenko, G., McReynolds, N., Marro, N., Edwards, W., Kay, E. R., &

Dholakia, K. (2018). Invited Article: Optical trapping of ultrasmooth gold

nanoparticles in liquid and air. APL Photonics, 3(7).

https://doi.org/10.1063/1.5030404

 

Arole, V. M., & Munde, S. V. (2014). Fabrication of Nanomaterials by Top-Down

and Bottom-Up Approaches - an Overview. JAAST:Material Science (Special

Issue, 1(2), 89–93.

 

Ashkin, A. (1970). Acceleration and Trapping of Particles by Radiation Pressure.

Physical Review Letters, 24(4), 156–159.

https://doi.org/10.1103/PhysRevLett.24.156

 

Ashkin, A. (1992). Forces of a single-beam gradient laser trap on a dielectric sphere

in the ray optics regime. Biophysical Journal, 61(2), 569–582.

https://doi.org/10.1016/S0006-3495(92)81860-X

 

Ashkin, A., & Dziedzic, J. M. (1971). Optical levitation by radiation pressure. Applied

Physics Letters, 19(8), 283–285. https://doi.org/10.1063/1.1653919

 

Ashkin, A., & Dziedzic, J. M. (1976). Optical levitation in high vacuum. Applied

Physics Letters, 28(6), 333–335. https://doi.org/10.1063/1.88748

 

Ashkin, A., Dziedzic, J. M., Bjorkholm, J. E., & Chu, S. (1986). Observation of a

single-beam gradient force optical trap for dielectric particles. Optical Angular

Momentum, 11(5), 196–198. https://doi.org/10.1364/ol.11.000288

 

Athar, M., Ranjan, P., & Jha, P. C. (2018). Investigation of calixarene complexes with

dasatinib and lapatinib: A Density Functional Theory approach. Journal of

Inclusion Phenomena and Macrocyclic Chemistry, 84, 160–165.

https://doi.org/10.1016/j.jmgm.2018.06.018

 

Azahari, N. A., Supian, F. L., Richardson, T. H., & Malik, S. A. (2014). Properties of

calix4-lead(Pb) films using Langmuir-Blodgett(LB) technique as an application

of ion sensor. Advanced Materials Research, 895, 8–11.

https://doi.org/10.4028/www.scientific.net/AMR.895.8

 

Azam, U. (2018). Investigation of interaction of soft nanoparticles based vesicles with

lung surfactant via Langmuir-Blodgett trough and quartz crystal microbalance

study. J Nanomed Nanotechnol, 9(3).

 

Bai, H., Wang, J., Li, Z., & Tang, G. (2019). Macrocyclic compounds for drug and

gene delivery in immune-modulating therapy. International Journal of

Molecular Sciences, 20(9). https://doi.org/10.3390/ijms20092097

 

Baratto, C., Golovanova, V., Faglia, G., Hakola, H., Niemi, T., Tkachenko, N.,

Nazarchurk, B., & Golovanov, V. (2020). On the alignment of ZnO nanowires

by Langmuir – Blodgett technique for sensing application. Applied Surface

Science, 528, 146959. https://doi.org/10.1016/j.apsusc.2020.146959

 

Bayda, S., Adeel, M., Tuccinardi, T., Cordani, M., & Rizzolio, F. (2019). Molecules-

25-00112-V2.Pdf. Molecules, 25(112), 1–15.

 

Benelmekki, M., & Erbe, A. (2019). Nanostructured thin films–background,

preparation and relation to the technological revolution of the 21st century. In

Frontiers of Nanoscience (14th ed., Vol. 14, pp. 1–34). Elsevier.

https://doi.org/10.1016/B978-0-08-102572-7.00001-5

 

Bhalla, V. (2018). Supramolecular chemistry: From molecule to molecular machines.

Resonance, 23, 277–290. https://doi.org/10.1080/10610279408029844

 

Blodgett, K. B. (1935). Films Built by Depositing Successive Monomolecular Layers

on a Solid Surface. Journal of the American Chemical Society, 57(6), 1007–

1022. https://doi.org/10.1021/ja01309a011

 

Blodgett, K. B., & Langmuir, I. (1937). Built-up films of barium stearate and their

optical properties. Physical Review, 51(11), 964–982.

https://doi.org/10.1103/PhysRev.51.964

 

Borlido, P., Schmidt, J., Huran, A. W., Tran, F., Marques, M. A. L., & Botti, S.

(2020). Exchange-correlation functionals for band gaps of solids: benchmark,

reparametrization and machine learning. Npj Computational Materials, 6(1).

https://doi.org/10.1038/s41524-020-00360-0

 

Bouchemela, H., Madi, F., & Nouar, L. (2019). DFT investigation of host–guest

interactions between α-Terpineol and β-cyclodextrin. Journal of Inclusion

Phenomena and Macrocyclic Chemistry, 95(3–4), 247–258.

https://doi.org/10.1007/s10847-019-00940-8

 

Bouvier-Capely, C., Bonthonneau, J. P., Dadache, E., & Rebière, F. (2014). An

alternative procedure for uranium analysis in drinking water using AQUALIX

columns: Application to varied French bottled waters. Talanta, 118, 180–185.

https://doi.org/10.1016/j.talanta.2013.10.010

 

Brown, L. R. (2005). Commercial challenges of protein drug delivery. Expert Opinion

on Drug Delivery, 2(1), 29–42. https://doi.org/10.1517/17425247.2.1.29

 

Brown, S. D., Plumb, J. A., Johnston, B. F., & Wheate, N. J. (2012). Inorganica

Chimica Acta Folding of dinuclear platinum anticancer complexes within the

cavity of para -sulphonatocalix [ 4 ] arene. Inorganica Chimica Acta, 393, 182–

186. https://doi.org/10.1016/j.ica.2012.04.033

 

Burgess, C. (2017). The basis for good spectrophotometric UV&visible

measurements. In UV-Visible Spectrophotometry of Water and Wastewater.

Elsevier B.V. https://doi.org/10.1016/B978-0-444-63897-7.00001-9

 

Bustamante, C. J., Chemla, Y. R., Liu, S., & Wang, M. D. (2021). Optical tweezers in

single-molecule biophysics. Nature Reviews Methods Primers, 1(1).

https://doi.org/10.1038/s43586-021-00021-6

 

Cai, C., Liu, K., Zhu, Y., Li, P., Wang, Q., Liu, B., Chen, S., Li, H., Zhu, L., Li, H.,

Fu, J., Chen, Y., Pensa, E., Hu, J., Lu, Y., Chan, T., Cortés, E., & Liu, M. (2022).

Optimizing Hydrogen Binding on Ru Sites with RuCo Alloy Nanosheets for

Efficient Alkaline Hydrogen Evolution. Angewandte Chemie, 134(4).

https://doi.org/10.1002/ange.202113664

 

Chachaj-Brekiesz, A., Kobierski, J., Wnȩtrzak, A., & Dynarowicz-Latka, P. (2021).

Electrical properties of membrane phospholipids in langmuir monolayers.

Membranes, 11(1), 1–11. https://doi.org/10.3390/membranes11010053

 

Chan, C. T. L., Ma, C., Chan, R. C. T., Ou, H. M., Xie, H. X., Wong, A. K. W.,

Wang, M. L., & Kwok, W. M. (2020). A long lasting sunscreen controversy of 4-

aminobenzoic acid and 4-dimethylaminobenzaldehyde derivatives resolved by

ultrafast spectroscopy combined with density functional theoretical study.

Physical Chemistry Chemical Physics, 22(15), 8006–8020.

https://doi.org/10.1039/c9cp07014a

 

Chandran, M., Asyraf Wan Mahmood, W. M., Omar, F. N., & Lazim, A. M. (2022).

Removal of Methylene Blue from Aqueous Solution Using Modified

Polystyrene-Calixarene (PS-C) Composite. Water, Air, and Soil Pollution,

233(2). https://doi.org/10.1007/s11270-022-05533-9

 

Chen, S., Dong, H., & Yang, J. (2020). Surface potential/charge sensing techniques

and applications. Sensors (Switzerland), 20(6), 1–18.

https://doi.org/10.3390/s20061690

 

Chen, W., Li, L., Zhang, X., Liang, Y., Pu, Z., & Wang, L. (2017). Curcumin : a

calixarene derivative micelle potentiates anti-breast cancer stem cells effects in

xenografted , triple-negative breast cancer mouse models. Drug Delivery, 0(0),

1470–1481. https://doi.org/10.1080/10717544.2017.1381198

 

Chen, X., Lenhert, S., Hirtz, M., Lu, N., Fuchs, H., & Chi, L. (2007). Langmuirblodgett

patterning: A bottom-up way to build mesostructures over large areas.

Accounts of Chemical Research, 40(6), 393–401.

https://doi.org/10.1021/ar600019r

 

Chen, Y., Zhang, J., Gao, Y., Lee, J., Chen, H., & Yin, Y. (2015). Visual

determination of aliphatic diamines based on host-guest recognition of

calix[4]arene derivatives capped gold nanoparticles. Biosensors and

Bioelectronics, 72, 306–312. https://doi.org/10.1016/j.bios.2015.04.036

 

Chumakov, A. S., Al-Alwani, A. J. K., Gorbachev, I. A., Glukhovskoy, E. G., &

Usoltseva, N. V. (2017). Effect of temperature on the value of the surface

potential and the phase state of 4’-n-octyl-4-p-cyanobiphenyl liquid crystal.

Journal of Physics: Conference Series, 929(1), 5–10.

https://doi.org/10.1088/1742-6596/929/1/012044

 

Clark, S. R., Lee, K. Y., Lee, H., Khetan, J., Chang, H., Choi, Y. H., Shin, K., Won,

Y., & Kim, C. (2017). Membranes under Osmotic Stress.

 

Crisan, M. E., Bourosh, P., Maffei, M. E., Forni, A., Pieraccini, S., Sironi, M., &

Chumakov, Y. M. (2014). Synthesis, crystal structure and biological activity of

2-hydroxyethylammonium salt of p-Aminobenzoic acid. PLoS ONE, 9(7), 1–10.

https://doi.org/10.1371/journal.pone.0101892

 

Daly, M., Sergides, M., & Nic Chormaic, S. (2015). Optical trapping and

manipulation of micrometer and submicrometer particles. Laser and Photonics

Reviews, 9(3), 309–329. https://doi.org/10.1002/lpor.201500006

 

de Faria, A. N., Cruz, M. A. E., Ruiz, G. C. M., Zancanela, D. C., Ciancaglini, P., &

Ramos, A. P. (2018). Different compact hybrid Langmuir–Blodgett-film coatings

modify biomineralization and the ability of osteoblasts to grow. Journal of

Biomedical Materials Research - Part B Applied Biomaterials, 106(7), 2524–

2534. https://doi.org/10.1002/jbm.b.34069

 

de Oliveira, G. B., de Castro Gomes Vieira, C. M., Orlando, R. M., & Faria, A. F.

(2017). Simultaneous determination of fumonisins B1 and B2 in different types

of maize by matrix solid phase dispersion and HPLC-MS/MS. Food Chemistry,

233, 11–19. https://doi.org/10.1016/j.foodchem.2017.04.091

 

DeLeo, V. A. (2018). Clinical Photomedicine (Hendry W. Lim & N. A. Soter (eds.);

1st ed., p. 13). Routledge.

 

Eckerskorn, N., Bowman, R., Kirian, R. A., Awel, S., Wiedorn, M., Küpper, J., ... &

Rode, A. V. (2015, August). Toward steering a jet of particles into an x-ray beam

with optically induced forces. In Optical Trapping and Optical

Micromanipulation XII(Vol. 9548, pp. 71-82). SPIE.

 

Eddaif, L., Shaban, A., & Telegdi, J. (2019). Sensitive detection of heavy metals ions

based on the calixarene derivatives-modified piezoelectric resonators: a review.

In International Journal of Environmental Analytical Chemistry (Vol. 99, Issue

9, pp. 824–853). Taylor and Francis Ltd.

https://doi.org/10.1080/03067319.2019.1616708

 

Effiong, D. E., Uwah, T. O., Jumbo, E. U., Akpabio, A. E., Effiong, D. E., Uwah, T.

O., Jumbo, E. U., & Akpabio, A. E. (2019). Nanotechnology in Cosmetics:

Basics, Current Trends and Safety Concerns—A Review. Advances in

Nanoparticles, 9(1), 1–22. https://doi.org/10.4236/anp.2020.91001

 

Elbashir, A. A., Altayib Alasha Abdalla, F., & Aboul-Enein, H. Y. (2015). Host-guest

inclusion complex of mesalazine and β-cyclodextrin and spectrofluorometric

determination of mesalazine. Luminescence, 30(4), 444–450.

https://doi.org/10.1002/bio.2758

 

Elliott, R. W., Sutton, A. L., Abrahams, B. F., D’Alessandro, D. M., Goerigk, L., Hua,

C., Hudson, T. A., Robson, R., & White, K. F. (2021). Multifunctional

Coordination Polymer Exhibiting Reversible Mechanical Motion Allowing

Selective Uptake of Guests and Leading to Enhanced Electrical Conductivity.

Inorganic Chemistry, 60(17), 13658–13668.

https://doi.org/10.1021/acs.inorgchem.1c01979

 

Engel, E., & Vosko, S. H. (1993). Exact exchange-only potentials and the virial

relation as microscopic criteria for generalized gradient approximations. Physical

Review B, 47(20), 13164–13174. https://doi.org/10.1103/PhysRevB.47.13164

 

Español, E. S., & Maldonado, M. (2019). Host–Guest Recognition of Pesticides by

Calixarenes. Critical Reviews in Analytical Chemistry, 49(5), 383–394.

https://doi.org/10.1080/10408347.2018.1534200

 

Español, E. S., & Villamil, M. M. (2019). Calixarenes: Generalities and their role in

improving the solubility, biocompatibility, stability, bioavailability, detection,

and transport of biomolecules. Biomolecules, 9(3).

https://doi.org/10.3390/biom9030090

 

Essiambre, R. J. (2021). Arthur Ashkin: Father of the optical tweezers. Proceedings of

the National Academy of Sciences of the United States of America, 118(7), 1–4.

https://doi.org/10.1073/pnas.2026827118

 

Fan, X., & Guo, X. (2021). Development of calixarene-based drug nanocarriers.

Journal of Molecular Liquids, 325, 115246.

https://doi.org/10.1016/j.molliq.2020.115246

 

Fernández, L., Reviglio, A. L., Heredia, D. A., Morales, G. M., Santo, M., Otero, L.,

Alustiza, F., Liaudat, A. C., Bosch, P., Larghi, E. L., Bracca, A. B. J., &

Kaufman, T. S. (2021). Langmuir-Blodgett monolayers holding a wound healing

active compound and its effect in cell culture. A model for the study of surface

mediated drug delivery systems. Heliyon, 7(3).

https://doi.org/10.1016/j.heliyon.2021.e06436

 

Feynman, R. P. (1959). Plenty of room at the bottom?

https://doi.org/10.1511/2012.96.226

 

Feynman, R. P. (1992). There’s Plenty of Room at the Bottom. JOURNAL OF

MICROELECTROMECHANICAL SYSTEMS, 1(1).

https://doi.org/10.1023/B:NACO.0000027752.95792.a9

 

Franklin, B. (1774). The stilling of waves by means of oil. Philosophical Transactions

of the Royal Society of London, 64(1774), 445–460.

https://doi.org/10.1098/rstl.1774.0044

 

Gadwal, I., Sheng, G., Thankamony, R. L., Liu, Y., Li, H., & Lai, Z. (2018).

Synthesis of Sub-10 nm Two-Dimensional Covalent Organic Thin Film with

Sharp Molecular Sieving Nanofiltration. ACS Applied Materials and Interfaces,

10(15), 12295–12299. https://doi.org/10.1021/acsami.7b19450

 

Gago-Ferrero, P., Díaz-Cruz, M. S., & Barceló, D. (2012). An overview of UVabsorbing

compounds (organic UV filters) in aquatic biota. Analytical and

Bioanalytical Chemistry, 404(9), 2597–2610. https://doi.org/10.1007/s00216-

012-6067-7

 

Gainar, A., Stevens, J. S., Suljoti, E., Xiao, J., Golnak, R., Aziz, E. F., & Schroeder,

S. L. M. (2016). The Structure of p-Aminobenzoic Acid in Water: Studies

Combining UV-Vis, NEXAFS and RIXS Spectroscopies. Journal of Physics:

Conference Series, 712(1). https://doi.org/10.1088/1742-6596/712/1/012034

 

Galindo-Murillo, R. (2014). In Silico Design of Monomolecular Drug Carriers for the

Tyrosine Kinase Inhibitor Drug Imatinib Based on Calix- and Thiacalix[n]arene

Host Molecules: A DFT and Molecular Dynamics Study.

 

Galindo-Murillo, R., Aguilar-Suárez, L. E., & Barroso-Flores, J. (2016). A mixed

DFT-MD methodology for the in silico development of drug releasing

macrocycles. Calix and thia-calix[N]arenes as carriers for Bosutinib and

Sorafenib. Journal of Computational Chemistry, 37(10), 940–946.

https://doi.org/10.1002/jcc.24281

 

Galindo-Murillo, R., Olmedo-Romero, A., Cruz-Flores, E., Petrar, P. M., Kunsagi-

Mate, S., & Barroso-Flores, J. (2014). Calix[n]arene-based drug carriers: A DFT

study of their electronic interactions with a chemotherapeutic agent used against

leukemia. Computational and Theoretical Chemistry, 1035, 84–91.

https://doi.org/10.1016/j.comptc.2014.03.001

 

Gao, Y., Jiao, T., Ma, K., Xing, R., Zhang, L., Zhou, J., & Peng, Q. (2017). Variable

self-assembly and: In situ host-guest reaction of beta-cyclodextrin-modified

graphene oxide composite Langmuir films with azobenzene compounds. RSC

Advances, 7(65), 41043–41051. https://doi.org/10.1039/c7ra07109d

 

García, Á. M., Valero, R., & Illas, F. (2017). An Empirical , Yet Practical Way to

Predict the Band Gap in Solids by Using Density Functional Band Structure

Calculations An empirical , yet practical way to predict the band gap in solids by

using density functional band structure calculations. Journal of Physical

Chemistry C, 121, 18862–18866. https://doi.org/10.1021/acs.jpcc.7b07421

 

Genwa, M., & Kumar, P. (2019). Implications of nanotechnology in healthcare.

Nanoscience & Nanotechnology-Asia, 9(1), 44–57.

 

Gillespie, P. N. O., & Martsinovich, N. (2019). Origin of Charge Trapping in

TiO2/Reduced Graphene Oxide Photocatalytic Composites: Insights from

Theory. ACS Applied Materials and Interfaces, 11(35), 31909–31922.

https://doi.org/10.1021/acsami.9b09235

 

Goldner, L. S., Jofre, A. M., & Tang, J. (2010). Droplet Confinement and

Fluorescence Measurement of Single Molecules. In Methods in Enzymology (1st

ed., Vol. 472, Issue 10, pp. 61–88). Academic Press.

https://doi.org/10.1016/S0076-6879(10)72015-2

 

Gong, K., Yang, K., & White, C. E. (2023). Density functional modeling of the

binding energies between aluminosilicate oligomers and different metal cations.

Frontiers in Materials, 10(April), 1–17.

https://doi.org/10.3389/fmats.2023.1089216

 

Gong, Z., Pan, Y. Le, Videen, G., & Wang, C. (2018). Optical trapping and

manipulation of single particles in air: Principles, technical details, and

applications. Journal of Quantitative Spectroscopy and Radiative Transfer, 214,

94–119. https://doi.org/10.1016/j.jqsrt.2018.04.027

 

Goyal, R. K. (2017). Nanomaterials and nanocomposites: synthesis, properties,

characterization techniques, and applications. CRC Press.

 

Green, A. C., Williams, G. M., Logan, V., & Strutton, G. M. (2011). Reduced melanoma after regular sunscreen use: Randomized trial follow-up. Journal of

Clinical Oncology, 29(3), 257–263. https://doi.org/10.1200/JCO.2010.28.7078

 

Groom, C. R., Bruno, I. J., Lightfoot, M. P., & Ward, S. C. (2016). The Cambridge

structural database. Acta Crystallographica Section B: Structural Science,

Crystal Engineering and Materials, 72(2), 171–179.

https://doi.org/10.1107/S2052520616003954

 

Gutsche, C. D. (1989). Calixarenes in Monographs in Supramolecular Chemistry.

Royal Society of Chemistry 127.

 

Habiba, K., Makarov, V. I., Weiner, B. R., & Morell, G. (2014). Manufacturing

Nanostructures. (A. Waqar & N. Ali (eds.)). one central press (OCN).

https://doi.org/10.13140/RG.2.2.16446.28483

 

Hamedani, Y., Macha, P., Bunning, T. J., R., N. R., & Vasudev, M. C. (2016).

Chemical Vapor Deposition - Recent Advances and Applications in Optical,

Solar Cells and Solid State Devices (S. Neralla (ed.); pp. 248–280). Intech Open.

 

Hamidon, F. A., Supian, F. L., Mat Darus, M., Wong, Y. Y., & Abd Karim, N. F. N.

(2023). Host-guest complexes application in textile industry. Research Journal

of Textile and Apparel. https://doi.org/10.1108/RJTA-04-2023-0044

 

Hanrahan, J. R. (2012). Sunscreens Jane. 35(5), 148–151.

www.australianprescriber.com/magazine/35/5/148/51).

 

Haroon, F., Farwa, U., Arif, M., Raza, M. A., Sandhu, Z. A., El Oirdi, M., Farhan, M.,

& Alhasawi, M. A. I. (2023). Novel Para-Aminobenzoic Acid Analogs and Their

Potential Therapeutic Applications. Biomedicines, 11(10).

https://doi.org/10.3390/biomedicines11102686

 

Hohenberg, P., & Kohn, W. (1964). The convolution equation of Choquet and Deny

on [IN]-groups. Physical Review, 136(3B). https://doi.org/10.1007/BF01198136

 

Hornyak, G. L., Moore, J. J., Tibbals, H. F., & Dutta, J. (2018). Fundamentals of

nanotechnology. CRC Press.

 

Horozić, E., Ademović, Z., Suljagić, J., Cipurković, A., Rosa, E., Sejfić, A.,

Husejnagić, D., & Hodzić, S. (2019). Synthesis, spectral characterization,

antibacterial and antifungal activity of copper (II)-pABA complex. Technologia

Acta, 12(1), 27–30. https://doi.org/10.5281/zenodo.3268784

 

Hu, Z., Liu, Y., Xu, X., Yuan, W., Yang, L., Shao, Q., Guo, Z., Ding, T., & Huang, Y.

(2019). Efficient intrinsic self-healing epoxy acrylate formed from host-guest

chemistry. Polymer, 164, 79–85. https://doi.org/10.1016/j.polymer.2019.01.010

 

Huang, F., & Anslyn, E. V. (2015). Introduction: Supramolecular Chemistry.

Chemical Reviews, 115(15), 6999. https://doi.org/10.1021/acs.chemrev.5b00352

 

Hussain, S. A., Dey, B., Bhattacharjee, D., & Mehta, N. (2018). Unique

supramolecular assembly through Langmuir – Blodgett (LB) technique. Heliyon,

4(12), e01038. https://doi.org/10.1016/j.heliyon.2018.e01038

 

Iqbal, M. A., Ashraf, N., Shahid, W., Afzal, D., Idrees, F., & Ahmad, R. (2021).

Fundamentals of Density Functional Theory: Recent Developments, Challenges

and Future Horizons. In Density Functional Theory-Recent Advances, New

Perspectives and Applications. IntechOpen.

 

Iqbal, P., Preece, J. A., & Mendes, P. M. (2012). Nanotechnology: The “Top‐Down”

and “Bottom‐Up” Approaches. Supramolecular Chemistry.

https://doi.org/10.1002/9780470661345.smc195

 

Jang, Y. M., Yu, C. J., Kim, J. S., & Kim, S. U. (2018). Ab initio design of drug

carriers for zoledronate guest molecule using phosphonated and sulfonated

calix[4]arene and calix[4]resorcinarene host molecules. Journal of Materials

Science, 53(7), 5125–5139. https://doi.org/10.1007/s10853-017-1930-8

 

Jeevanandam, J., Barhoum, A., Chan, Y. S., Dufresne, A., & Danquah, M. K. (2018).

Review on nanoparticles and nanostructured materials: History, sources, toxicity

and regulations. Beilstein Journal of Nanotechnology, 9(1), 1050–1074.

https://doi.org/10.3762/bjnano.9.98

 

Jiang, C., Song, Z., Yu, L., Ye, S., & He, H. (2020). Fluorescent probes based on

macrocyclic hosts: Construction, mechanism and analytical applications. TrAC -

Trends in Analytical Chemistry, 133, 116086.

https://doi.org/10.1016/j.trac.2020.116086

 

Jin Mei, C., & Ainliah Alang Ahmad, S. (2021). A review on the determination heavy

metals ions using calixarene-based electrochemical sensors. Arabian Journal of

Chemistry, 14(9), 103303. https://doi.org/10.1016/j.arabjc.2021.103303

 

Johal, M. S., & Johnson, L. E. (2018). Understanding nanomaterials (Second Edi).

CTCPress.

 

Joykutty, J., Mathur, V., Venkataraman, V., & Natarajan, V. (2005). Direct

measurement of the oscillation frequency in an optical-tweezers trap by

parametric excitation. Physical review letters, 95(19), 193902.

 

Jun, Y., Tripathy, S. K., Narayanareddy, B. R. J., Mattson-Hoss, M. K., & Gross, S. P.

(2014). Calibration of optical tweezers for in vivo force measurements: How do

different approaches compare? Biophysical Journal, 107(6), 1474–1484.

https://doi.org/10.1016/j.bpj.2014.07.033

 

Jurak, M., Szafran, K., Cea, P., & Martín, S. (2021). Analysis of Molecular

Interactions between Components in Phospholipid-Immunosuppressant-

Antioxidant Mixed Langmuir Films. Langmuir, 37(18), 5601–5616.

https://doi.org/10.1021/acs.langmuir.1c00434

 

Kadhum, W. R., Oshizaka, T., Ichiro, H., Todo, H., & Sugibayashi, K. (2016).

Usefulness of liquid-crystal oral formulations to enhance the bioavailability and

skin tissue targeting of p-amino benzoic acid as a model compound. European

Journal of Pharmaceutical Sciences, 88, 282–290.

https://doi.org/10.1016/j.ejps.2016.04.003

 

Kalume, A., Wang, C., & Pan, Y. Le. (2021). Review optical-trapping laser

techniques for characterizing airborne aerosol particles and its application in

chemical aerosol study. Micromachines, 12(4).

https://doi.org/10.3390/mi12040466

 

Kamboh, M. A., Arain, S. S., Jatoi, A. H., Sherino, B., Algarni, T. S., Al-onazi, W.

A., Al-Mohaimeed, A. M., & Rezania, S. (2021). Green sporopollenin supported

cyanocalixarene based magnetic adsorbent for pesticides removal from water:

Kinetic and equilibrium studies. Environmental Research, 201(June), 111588.

https://doi.org/10.1016/j.envres.2021.111588

 

Kandeel, M., Abdelrahman, A. H. M., Oh-Hashi, K., Ibrahim, A., Venugopala, K. N.,

Morsy, M. A., & Ibrahim, M. A. A. (2021). Repurposing of FDA-approved

antivirals, antibiotics, anthelmintics, antioxidants, and cell protectives against

SARS-CoV-2 papain-like protease. Journal of Biomolecular Structure and

Dynamics, 39(14), 5129–5136. https://doi.org/10.1080/07391102.2020.1784291

 

Kannan, V. (2020). Adsorption studies on air pollutants using blue phosphorene

nanosheet as a chemical sensor – DFT approach. Computational and Theoretical

Chemistry, 1186, 112910. https://doi.org/10.1016/j.comptc.2020.112910

 

Karabıyık, U. (2003). Optical and thermal characteristics of thin polymer and

polyehedral oligomeric silsequioxane (POSS) filled polymer films.

https://theses.lib.vt.edu/theses/available/etd-05142008-181528/

 

Kaya, S. I., Kurbanoglu, S., & Ozkan, S. A. (2019). Nanomaterials-Based

Nanosensors for the Simultaneous Electrochemical Determination of

Biologically Important Compounds: Ascorbic Acid, Uric Acid, and Dopamine.

Critical Reviews in Analytical Chemistry, 49(2), 101–125.

https://doi.org/10.1080/10408347.2018.1489217

 

Khalil-Cruz, L. E., Liu, P., Huang, F., & Khashab, N. M. (2021). Multifunctional

Pillar[ n]arene-Based Smart Nanomaterials. ACS Applied Materials and

Interfaces, 13(27), 31337–31354. https://doi.org/10.1021/acsami.1c05798

 

Khan, J. A., Sayed, M., Shah, N. S., Khan, S., Zhang, Y., Boczkaj, G., Khan, H. M.,

& Dionysiou, D. D. (2020). Synthesis of eosin modified TiO2 film with coexposed

{001} and {101} facets for photocatalytic degradation of paraaminobenzoic

acid and solar H2 production. Applied Catalysis B:

Environmental, 265(December), 118557.

https://doi.org/10.1016/j.apcatb.2019.118557

 

Khanna, V. K. (2016). Optochemical Nanosensors (A. C. Andrea Cusano, Francisco

J. Arregui, Michele Giordano (ed.); 1st ed.). CRC Press.

 

Kiegiel, K., Steczek, L., & Zakrzewska-Trznadel, G. (2013). Application of

calixarenes as macrocyclic ligands for uranium(VI): A review. Journal of

Chemistry, 2013(Vi). https://doi.org/10.1155/2013/762819

 

Kluczyk, A., Popek, T., Kiyota, T., de Macedo, P., Stefanowicz, P., Lazar, C., &

Konishi, Y. (2012). Drug Evolution: p-Aminobenzoic Acid as a Building Block.

Current Medicinal Chemistry, 9(21), 1871–1892.

https://doi.org/10.2174/0929867023368872

 

Kohn, W., & Sham, L. J. (1965). Self-Consistent Equations Including Exchange and

Correlation Effects. Physical Review, 140(4A).

 

Kolos, M., & Karlický, F. (2019). Accurate many-body calculation of electronic and

optical band gap of bulk hexagonal boron nitride. Physical Chemistry Chemical

Physics, 21(7), 3999–4005. https://doi.org/10.1039/c8cp07328g

 

Kongor, A., Panchal, M., Athar, M., Vora, M., Makwana, B., Jha, P. C., & Jain, V.

(2021). Calix[4]pyrrole Stabilized PdNPs as an Efficient Heterogeneous Catalyst

for Enhanced Degradation of Water-Soluble Carcinogenic Azo Dyes. Catalysis

Letters, 151(2), 548–558. https://doi.org/10.1007/s10562-020-03304-x

 

Krátký, M., Konečná, K., Janoušek, J., Brablíková, M., Janďourek, O., Trejtnar, F.,

Stolaříková, J., & Vinšová, J. (2020). 4-aminobenzoic acid derivatives:

Converting folate precursor to antimicrobial and cytotoxic agents. Biomolecules,

10(1), 1–20. https://doi.org/10.3390/biom10010009

 

Kress, H., Stelzer, E. H. K., & Rohrbach, A. (2005). Measuring and adjusting the

trapping position in optical tweezers. DGaO Proceedings, January 2005, 3–4.

 

Kumar, A., & Balasubramaniam, K. R. (2016). Crystal structure , stability , and

optoelectronic properties of the organic-inorganic wide-band-gap perovskite CH

3 NH 3 BaI 3 : Candidate for transparent conductor applications. Physical

Review B, 180105, 1–5. https://doi.org/10.1103/PhysRevB.94.180105

 

Kumar, A., Terakosolphan, W., Hassoun, M., Vandera, K. K., Novicky, A., &

Harvey, R., ... & Forbes, B. (2017). A Biocompatible Synthetic Lung Fluid

Based on Human Respiratory Tract Lining Fluid Composition. Pharmaceutical

Research, 34(12), 2454–2465. https://doi.org/10.1007/s11095-017-2169-4

 

Kumar, R., Sharma, A., Singh, H., Suating, P., Kim, H. S., Sunwoo, K., Shim, I.,

Gibb, B. C., & Kim, J. S. (2019). Revisiting Fluorescent Calixarenes: From

Molecular Sensors to Smart Materials [Review-article]. Chemical Reviews,

119(16), 9657–9721. https://doi.org/10.1021/acs.chemrev.8b00605

 

Kumar, S., Bhushan, P., & Bhattacharya, S. (2018). Fabrication of Nanostructures

with Bottom-up Approach and Their Utility in Diagnostics, Therapeutics, and

Others. In S. Bhattacharya, A. Agarwal, N. Chanda, A. Pandey, & A. Sen (Eds.),

Energy, Environment, and Sustainability (pp. 167–198). Springer Nature

Singapore. https://doi.org/10.1007/978-981-10-7751-7_8

 

Kumar, S., Nehra, M., Kedia, D., Dilbaghi, N., Tankeshwar, K., & Kim, K. H. (2020).

Nanotechnology-based biomaterials for orthopaedic applications: Recent

advances and future prospects. Materials Science and Engineering C, 106(May

2019). https://doi.org/10.1016/j.msec.2019.110154

 

Kumar, V., & Roy, D. R. (2019). Single-layer stanane as potential gas sensor for NO

2 , SO 2 , CO 2 and NH 3 under DFT investigation. Physica E: Low-

Dimensional Systems and Nanostructures, 110(2), 100–106.

https://doi.org/10.1016/j.physe.2019.02.001

 

Kumawat, M., Thapliyal, D., Verros, G. D., Arya, R. K., Barman, S., Halder, G., &

Shandilya, P. (2022). PANI-Based Hydrogen Sulfide Gas Sensors. 1–28.

 

Kumoro, A. C., Hasan, M., & Singh, H. (2009). Effects of solvent properties on the

Soxhlet extraction of diterpenoid lactones from Andrographis paniculata leaves.

ScienceAsia, 35(3), 306–309. https://doi.org/10.2306/scienceasia1513-

1874.2009.35.306

 

Laborda, P., Li, C., Zhao, Y., Tang, B., Ling, J., He, F., & Liu, F. (2019). Antifungal

Metabolite p-Aminobenzoic Acid (pABA): Mechanism of Action and Efficacy

for the Biocontrol of Pear Bitter Rot Disease. Journal of Agricultural and Food

Chemistry, 67(8), 2157–2165. https://doi.org/10.1021/acs.jafc.8b05618

 

Langmuir, I. (1920). The mechanism of the surface phenomena of flotation.

Transactions of the Faraday Society, 15, 62–74.

https://doi.org/10.1039/TF9201500062

 

Langreth, D. C., & Perdew, J. P. (1980). D.C.Langreth_Phys.Rev.B_1980.pdf. 21(12).

 

Lawal, A., Shaari, A., Ahmed, R., & Jarkoni, N. (2017). First-principles

investigations of electron-hole inclusion effects on optoelectronic properties of

Bi2Te3, a topological insulator for broadband photodetector. Physica B:

Condensed Matter, 520, 69–75. https://doi.org/10.1016/j.physb.2017.05.048

 

Legnani, L., Compostella, F., Sansone, F., & Toma, L. (2015). Cone Calix[4]arenes

with Orientable Glycosylthioureido Groups at the Upper Rim: An In-Depth

Analysis of Their Symmetry Properties. Journal of Organic Chemistry, 80(15),

7412–7418. https://doi.org/10.1021/acs.joc.5b00878

 

Lehn, J. ‐M. (1988). Supramolecular Chemistry—Scope and Perspectives Molecules,

Supermolecules, and Molecular Devices (Nobel Lecture). Angewandte Chemie

International Edition in English, 27(1), 89–112.

https://doi.org/10.1002/anie.198800891

 

Leontie, L., Danac, R., Carlescu, A., Doroftei, C., Rusu, G. G., Tiron, V., Gurlui, S.,

& Susu, O. (2018). Electric and optical properties of some new functional lowerrim-

substituted calixarene derivatives in thin films. Applied Physics A: Materials

Science and Processing, 124(5), 0. https://doi.org/10.1007/s00339-018-1784-1

 

Li, J. H., Wu, J., & Yu, Y. X. (2021). DFT exploration of sensor performances of

two-dimensional WO3 to ten small gases in terms of work function and band gap

changes and I-V responses. Applied Surface Science, 546(September 2020),

149104. https://doi.org/10.1016/j.apsusc.2021.149104

 

Li, N., Zhu, X. min, Li, W. qiang, Fu, Z. hai, Hu, M. zhu, & Hu, H. zhu. (2019).

Review of optical tweezers in vacuum. Frontiers of Information Technology and

Electronic Engineering, 20(5), 655–673. https://doi.org/10.1631/FITEE.1900095

 

Lim, C. K. D. (2020). Sensitivity Optimisation of Calixarene-reduced Graphene

Oxide Thin Film via Langmuir, Optical, Structural and Electrical

Characterisation. Sultan Idris Educational University.

 

Lim, C. K. D. & Supian, F. L. (2019). Calix[4]arene and calix[8]arene Langmuir

films: Surface studies, optical and structural characterizations. International

Journal of Innovative Technology and Exploring Engineering, 8(8), 80–85.

 

Lim, D. C. K. & Supian, F. L. (2020). Langmuir , Raman , and electrical properties

comparison of calixarene and calixarene-rGO using Langmuir Blodgett ( LB )

technique. Journal of Materials Science: Materials in Electronics.

https://doi.org/10.1007/s10854-020-04392-6

 

Lim, D. C. K., Supian, F. L., & Hamzah, Y. (2020). Langmuir, Raman, and electrical

properties comparison of calixarene and calixarene-rGO using Langmuir

Blodgett (LB) technique. Journal of Materials Science: Materials in Electronics,

31(21), 18487–18494. https://doi.org/10.1007/s10854-020-04392-6

 

Lim, W. (2018). Deposition of indigo thin films by Langmuir-Schaefer technique.

Aalto University.

 

Liu, D., Fan, X., Dong, D., Zhang, Z., Yu, N., Yang, Z., Liu, R., & Liu, B. (2020).

Synthesis and high pressure studies of white luminescence host-guest complex

nanocrystals based on C60 and p-But-calix[8]arene. Nanotechnology, 31(16).

https://doi.org/10.1088/1361-6528/ab62ce

Paquin, F., Rivnay, J., Salleo, A., Stingelin, N., & Silva, C. (2013). Multi-phase

semicrystalline microstructures drive exciton dissociation in neat plastic

semiconductors. arXiv preprint arXiv:1310.8002.

 

Loa, I., Popuri, S. R., Fortes, A. D., & Bos, J. W. G. (2018). Critical mode and bandgap-

controlled bipolar thermoelectric properties of SnSe. Physical Review

Materials, 2(8), 1–7. https://doi.org/10.1103/PhysRevMaterials.2.085405

 

Lowry, G. V., Gregory, K. B., Apte, S. C., & Lead, J. R. (2014). Transformations of

Nanomaterials in the Environment. Environmental Science and Technology, 46,

6893–6899. https://doi.org/10.1016/B978-0-08-099408-6.00002-5

 

Lu, J., Chen, Z., Ma, Z., Pan, F., Curtiss, L. A., & Amine, K. (2016). The role of

nanotechnology in the development of battery materials for electric vehicles.

Nature Nanotechnology, 11(12), 1031–1038.

https://doi.org/10.1038/nnano.2016.207

 

Machado, A. C., & Caseli, L. (2020). Interaction of nitrofurantoin with lipid langmuir

monolayers as cellular membrane models distinguished with tensiometry and

infrared spectroscopy. Colloids and Surfaces B: Biointerfaces, 188(September

2019), 110794. https://doi.org/10.1016/j.colsurfb.2020.110794

 

Macleod, H. A. (2001). Thin-film optical filters.pdf (Third Edit). Institute of Physics

Publishing.

 

Madkour, L. H. (2019). Nanoelectronic materials: fundamentals and applications.

Springer Nature.

 

Mahadi, N. I. (2023). Optical Trapping and Manipulation of a Single Calix[4]arene

Microcluster in Water. Universiti Pendidikan Sultan Idris.

 

Mahadi, N. I., Ayop, S. K., Mat Yeng, M. S., & Supian, F. L. (2022). Power Density

Limit for Stable Optical Trapping of a Single Microcluster of Calix [ 4 ] Arene in

Water. Central Asia & the Caucasus, 23(1), 3000–3007.

 

Maiti, S. & Jana, S. (2019). Polysaccharide Carriers for Drug Delivery. Woodhead

Publishing.

 

Makhlouf, A. S. H. (2011). Current and advanced coating technologies for industrial

applications. In A. S. H. Makhlouf & I. Tiginyanu (Eds.), Nanocoatings and

ultra-thin films (pp. 3–23). Woodhead Publishing Limited.

https://doi.org/10.1533/9780857094902.1.3

 

Manawi, Y. M., & Atieh, M. A. (n.d.). A Review of Carbon Nanomaterials ’ Synthesis

via the Chemical Vapor Deposition ( CVD ) Method. Cvd.

https://doi.org/10.3390/ma11050822

 

Mao, L., Meng, C., Zeng, C., Ji, Y., Yang, X., & Gao, S. (2011). The effect of nitrate,

bicarbonate and natural organic matter on the degradation of sunscreen agent paminobenzoic

acid by simulated solar irradiation. Science of the Total

Environment, 409(24), 5376–5381.

https://doi.org/10.1016/j.scitotenv.2011.09.012

 

Maqsood, N., Asif, A., Ayub, K., Iqbal, J., Elnaggar, A. Y., Mersal, G. A. M.,

Ibrahim, M. M., & El-Bahy, S. M. (2022). DFT study of alkali and alkaline earth

metal-doped benzocryptand with remarkable NLO properties. RSC Advances,

12(25), 16029–16045. https://doi.org/10.1039/d2ra02209e

 

Margraf, J. T., & Reuter, K. (2021). Pure non-local machine-learned density

functional theory for electron correlation. Nature Communications, 12(1).

https://doi.org/10.1038/s41467-020-20471-y

 

Markitantova, Y. V., Akberova, S. I., Ryabtseva, A. A., & Stroeva, O. G. (2018). The

Effect of para-Aminobenzoic Acid on Apoptosis Processes in the Adult Rat

Conjunctiva and Corneal Epithelium in vivo after Hypobaric Hypoxia. Biology

Bulletin, 45(3), 226–234. https://doi.org/10.1134/S1062359018020061

 

Martins, R. M. (2004). Electronic Structure: Basic Theory and Practical Methods. In

Cambridge university press. https://doi.org/10.1080/00107514.2010.509989

 

Mattia, E., & Otto, S. (2015). Supramolecular systems chemistry. Nature

Nanotechnology, 10(2), 111–119. https://doi.org/10.1038/nnano.2014.337

 

McKinnon, A., Moore, B., Djuricanin, P., & Momose, T. (2022). UV Photolysis

Study of Para-Aminobenzoic Acid Using Parahydrogen Matrix Isolated

Spectroscopy. Photochem, 2(1), 88–101.

https://doi.org/10.3390/photochem2010008

 

McMahon, G., O’Malley, S., Nolan, K., & Diamond, D. (2003). Important calixarene

derivatives—their synthesis and applications. Arkivoc, 7, 23-31.

 

Mehran, Q. M., Fazal, M. A., Bushroa, A. R., Rubaiee, S., Fazal, M. A., Bushroa, A.

R., & Rubaiee, S. (2018). Critical Reviews in Solid State and Materials Sciences

A Critical Review on Physical Vapor Deposition Coatings Applied on Different

Engine Components A Critical Review on Physical Vapor Deposition Coatings

Applied on Different. 8436. https://doi.org/10.1080/10408436.2017.1320648

 

Miele, E., Spinelli, G. P., Miele, E., Fabrizio, E. Di, Ferretti, E., Tomao, S., & Gulino,

A. (2012). Nanoparticle-based delivery of small interfering RNA: Challenges for

cancer therapy. International Journal of Nanomedicine, 7, 3637–3657.

https://doi.org/10.2147/IJN.S23696

 

Minamiki, T., Ichikawa, Y., & Kurita, R. (2020). The power of assemblies at

interfaces: Nanosensor platforms based on synthetic receptor membranes.

Sensors (Switzerland), 20(8). https://doi.org/10.3390/s20082228

 

Mirzaei, M., Khayat, M., & Saeidi, A. (2012). Determination of para-aminobenzoic

Alternating Least Squares (MCR-ALS) method. Scientia Iranica, 19(3), 561–

564. https://doi.org/10.1016/j.scient.2011.12.016

 

Moberg, S. (2019). Artificial photosynthesis – 4-Aminobenzoic acids effects on charge

transfer in a photo catalytic system Artificial photosynthesis – 4-Aminobenzoic

acids effects on charge transfer in a photo catalytic system.

 

Mohammadi, A., Doctorsafaei, A. H., & Zia, K. M. (2018). Alginate/calix[4]arenes

modified graphene oxide nanocomposite beads: Preparation, characterization,

and dye adsorption studies. International Journal of Biological Macromolecules,

120, 1353–1361. https://doi.org/10.1016/j.ijbiomac.2018.09.136

 

Mohd Azmi, M. S., Noorizhab, M. F. F., Supian, F. L., & Malik, S. A. (2020). A

Review of Calixarene Langmuir–Blodgett Thin Film Characteristics for

Nanosensor Applications. Defence S and T Technical Bulletin, 13(2), 205–216.

 

Mokhtari, B., Pourabdollah, K., & Dalali, N. (2011). Applications of nano-baskets of

calixarenes in chromatography. Chromatographia, 73(9–10).

https://doi.org/10.1007/s10337-011-1954-1

 

Mokri, K., & Mozaffari, M. H. (2019). Numerical design of a plasmonic nanotweezer

for realizing high optical gradient force. Optics and Laser Technology,

119(November 2018), 105620. https://doi.org/10.1016/j.optlastec.2019.105620

 

Mori, S., & Wang, S. Q. (2020). Comprehensive Dermatologic Drug Therapy. In

Elsevier (4th ed., Vol. 20, Issue 3). https://doi.org/10.1001/archderm.138.5.703

 

Morimoto, M., Bierschenk, S. M., Xia, K. T., Bergman, R. G., Raymond, K. N., &

Toste, F. D. (2020). Advances in supramolecular host-mediated reactivity.

Nature Catalysis, 3(12), 969–984. https://doi.org/10.1038/s41929-020-00528-3

 

Moussa, Y. E., Qing, Y., Ong, E., Perry, J. D., Cheng, Z., Kayser, V., Cruz, E., Kim,

R. R., Sciortino, N., & Wheate, N. J. (2018). Demonstration of In Vitro Host-

Guest Complex Formation and Safety of para -Sulfonatocalix [ 8 ] arene as a

Delivery Vehicle for Two Antibiotic Drugs. Journal of Pharmaceutical Sciences,

1–7. https://doi.org/10.1016/j.xphs.2018.08.016

 

Munawar, A., Ong, Y., Schirhagl, R., Tahir, M. A., Khan, W. S., & Bajwa, S. Z.

(2019). Nanosensors for diagnosis with optical, electric and mechanical

transducers. RSC Advances, 9(12), 6793–6803.

https://doi.org/10.1039/c8ra10144b

 

Murphy, P., McKinlay, R. G., Dalgarno, S. J., & Paterson, M. J. (2015). Toward

understanding of the lower rim binding preferences of calix[4]arene. Journal of

Physical Chemistry A, 119(22), 5804–5815.

https://doi.org/10.1021/acs.jpca.5b02624

 

Mustafa, F., & Andreescu, S. (2020). Nanotechnology-based approaches for food

sensing and packaging applications. RSC Advances, 10(33), 19309–19336.

https://doi.org/10.1039/d0ra01084g

 

Nabok, A. (2005). Organic and inorganic nanostructures. In Choice Reviews Online

(Vol. 43, Issue 02). Norwood: Artech House. https://doi.org/10.5860/choice.43-0955

 

Nag, R., & Rao, C. P. (2022). Calixarene-mediated host–guest interactions leading to

supramolecular assemblies: visualization by microscopy. Chemical

Communications, 58(41), 6044–6063. www.aging-us.com

 

Naning, F. H. (2016). Surface Pressure-Area Isotherm, Optical and Electrical

Properties of P3HT/ Nanoparticles Thin Films by Modified Langmuir-Blodgett

Technique. UNIVERSITI PENDIDIKAN SULTAN IDRIS.

 

Naser, N. A., Alasedi, K. M., & Khan, Z. A. (2019). New Derivatization

Methodology of 4-aminobenzoic Acid from its Dietary Supplements: Kinetic

Spectrophotometric Methods for Determination. In Current Nutrition & Food

Science (Vol. 15, Issue 7, pp. 752–768).

https://doi.org/10.2174/1573401315666190719164931

 

Neopane, S., & Pantha, N. (2019). First-Principles Study of Van Der Waals

Interactions between Halogen Molecules (Cl2 and I2). Journal of Nepal Physical

Society, 5(1), 19–23. https://doi.org/10.3126/jnphyssoc.v5i1.26878

 

Ngoc, L. T. N., Tran, V. Van, Moon, J. Y., Chae, M., Park, D., & Lee, Y. C. (2019).

Recent Trends of Sunscreen Cosmetic. Cosmetics, 6(64), 1–15.

 

Nguyen, L. T. T., Ardana, A., Ten Brinke, G., & Schouten, A. J. (2010). Surface

potentials in Langmuir monolayers of unidirectionally oriented α-helical diblock

copolypeptides. Langmuir, 26(9), 6515–6521. https://doi.org/10.1021/la904007m

 

Nieminen, T. A., Knöner, G., Heckenberg, N. R., & Rubinsztein-Dunlop, H. (2007).

Physics of Optical Tweezers. Methods in Cell Biology, 82(06), 207–236.

https://doi.org/10.1016/S0091-679X(06)82006-6

 

Nitulescu, G., Lupuliasa, D., Adam-Dima, I., & Nitulescu, G. M. (2023). Ultraviolet

Filters for Cosmetic Applications. Cosmetics, 10(4).

https://doi.org/10.3390/cosmetics10040101

 

Nodeh, H. R., Kamboh, M. A., Wan Ibrahim, W. A., Jume, B. H., Sereshti, H., &

Sanagi, M. M. (2019). Equilibrium, kinetic and thermodynamic study of

pesticides removal from water using novel glucamine-calix[4]arene

functionalized magnetic graphene oxide. Environmental Science: Processes and

Impacts, 21(4), 714–726. https://doi.org/10.1039/c8em00530c

 

Notestein, J. M., Iglesia, E., & Katz, A. (2007). Photoluminescence and chargetransfer

complexes of calixarenes grafted on TiO 2 nanoparticles. Chemistry of

Materials, 19(20), 4998–5005. https://doi.org/10.1021/cm070779c

 

Obeid, M. A., Al Qaraghuli, M. M., Alsaadi, M., Alzahrani, A. R., Niwasabutra, K.,

& Ferro, V. A. (2017). Delivering natural products and biotherapeutics to

improve drug efficacy. Therapeutic Delivery, 8(11), 947–956.

https://doi.org/10.4155/tde-2017-0060

 

Ohto, K., Ueda, Y., Sathuluri, R. R., Kawakita, H., Morisada, S., & Inoue, K. (2018).

Silver extraction and recovery with macrocyclic and tripodal compounds. In S.

Sabir (Ed.), Silver Recovery from Assorted Spent Sources: Toxicology of Silver

Ion (p. 2018). World Scientific.

 

Oliveira J. O. N. (1992). Langmuir-Blodgett Films - Properties and Possible

Applications. Brazilian Journal of Physics, 22(2), 60–69.

 

Oliveira J. O. N., Caseli, L., & Ariga, K. (2022). The past and the future of Langmuir

and Langmuir– Blodgett films. Chemical Reviews, 122(6), 6459–6513.

 

Oshima, T., Asano, T., Inada, A., Ohto, K., & Jumina. (2022). Development of

aromatic ethers as solvents for a calix[6]arene derivative and extraction of amino

acids and proteins. Journal of Inclusion Phenomena and Macrocyclic Chemistry,

102(5–6), 507–514. https://doi.org/10.1007/s10847-022-01132-7

 

Oshina, I., & Spigulis, J. (2021). Beer–Lambert law for optical tissue diagnostics:

current state of the art and the main limitations. Journal of Biomedical Optics,

26(10), 1–17. https://doi.org/10.1117/1.jbo.26.10.100901

 

Ozcan, A. (2019). Investigation of the effect of para-amino benzoic acid (PABA)

added starch-coated chemicals on the printability properties of paper. Journal of

Applied Biomaterials and Functional Materials, 17(1).

https://doi.org/10.1177/2280800018816012

 

Pan, Y. C., Hu, X. Y., & Guo, D. S. (2021). Biomedical Applications of Calixarenes:

State of the Art and Perspectives. Angewandte Chemie - International Edition,

60(6), 2768–2794. https://doi.org/10.1002/anie.201916380

 

Park, J. Y., & Advincula, R. C. (2011). Nanostructured thin films from amphiphilic

molecules. In Nanocoatings and Ultra-Thin Films (Vol. 3). Woodhead

Publishing Limited. https://doi.org/10.1533/9780857094902.1.24

 

Partridge, M., Davis, F., James, S., Higson, S., & Tatam, R. (2017). A solution to the

slow stabilisation of surface pressure sensors based on the Wilhelmy

method  Matters, 1–7. https://doi.org/10.19185/matters.201611000016

 

Patra, J. K., Das, G., Fraceto, L. F., Campos, E. V. R., Rodriguez-Torres, M. D. P.,

Acosta-Torres, L. S., Diaz-Torres, L. A., Grillo, R., Swamy, M. K., Sharma, S.,

Habtemariam, S., & Shin, H. S. (2018). Nano based drug delivery systems:

Recent developments and future prospects. Journal of Nanobiotechnology, 16(1),

1–33. https://doi.org/10.1186/s12951-018-0392-8

 

Perdew, J. P., Burke, K., & Ernzerhof, M. (1996). Generalized gradient

approximation made simple. Physical Review Letters, 77(18), 3865–3868.

https://doi.org/10.1103/PhysRevLett.77.3865

 

Perdew, J. P., Ruzsinszky, A., Csonka, G. I., Vydrov, O. A., Scuseria, G. E.,

Constantin, L. A., Zhou, X., & Burke, K. (2008). Restoring the density-gradient

expansion for exchange in solids and surfaces. Physical Review Letters, 100(13),

1–4. https://doi.org/10.1103/PhysRevLett.100.136406

 

Pereira, A. R., & De Oliveira, O. N. (2021). Recent advances in the use of langmuir

monolayers as cell membrane models. Ecletica Quimica, 46, 18–29.

https://doi.org/10.26850/1678-4618eqj.v46.1SI.2021.p18-29

 

Picollo, M., Aceto, M., & Vitorino, T. (2019). UV-Vis spectroscopy. Physical

Sciences Reviews, 4(4), 1–14. https://doi.org/10.1515/psr-2018-0008

 

Pockels, A. (1891). Surface tension. Nature, 43, 437–439.https://doi.org/10.1038/043437c0

 

Pratiwi, R. A., & Nandiyanto, A. B. D. (2022). How to Read and Interpret UV-VIS

Spectrophotometric Results in Determining the Structure of Chemical

Compounds. Indonesian Journal of Educational Research and Technology, 2(1),

1–20. https://doi.org/10.17509/ijert.v2i1.35171

 

Priyangga, K. T. A., Kurniawan, Y. S., Ohto, K., & Jumina, J. (2022). A Review on

Calixarene Fluorescent Chemosensor Agents for Various Analytes. Journal of

Multidisciplinary Applied Natural Science, 2(1), 23–40.

https://doi.org/10.47352/jmans.2774-3047.101

 

Purohit, P., Samadi, A., Bendix, P. M., Laserna, J. J., & Oddershede, L. B. (2020).

Optical trapping reveals differences in dielectric and optical properties of copper

nanoparticles compared to their oxides and ferrites. Scientific Reports, 10(1), 1–

10. https://doi.org/10.1038/s41598-020-57650-2

 

Qian, S., Liu, C. C., & Yao, Y. (2021). Second-order topological insulator state in

hexagonal lattices and its abundant material candidates. Physical Review B,

104(24), 245427.

 

Raju, R., Torrent-Burgués, J., & Bryant, G. (2020). Interactions of cryoprotective

agents with phospholipid membranes - A Langmuir monolayer study. Chemistry

and Physics of Lipids, 231. https://doi.org/10.1016/j.chemphyslip.2020.104949

 

Ranaweera, A., & Bamieh, B. (2005). Modelling, identification, and control of a

spherical particle trapped in an optical tweezer. International Journal of Robust

and Nonlinear Control, 15(16), 747–768. https://doi.org/10.1002/rnc.1022

 

Rappe, A. M., Rabe, K. M., Kaxiras, E., & Joannopoulos, J. D. (1990). Optimized

pseudopotentials. Physical Review B, 41(2), 1227–1230.

https://doi.org/10.1103/PhysRevB.41.1227

 

Renziehausen, A., Tsiailanis, A. D., Perryman, R., Stylos, E. K., Chatzigiannis, C.,

O’Neill, K., Crook, T., Tzakos, A. G., & Syed, N. (2019). Encapsulation of

temozolomide in a calixarene nanocapsule improves its stability and enhances its

therapeutic efficacy against glioblastoma. Molecular Cancer Therapeutics,

18(9), 1497–1505. https://doi.org/10.1158/1535-7163.MCT-18-1250

 

Rifat Çapan. (2019). Porphyrin Langmuir-Blodgett Thin Film for Organic Vapor

Detection. Journal of Physical Science and Application, 9(1).

https://doi.org/10.17265/2159-5348/2019.01.002

 

Roberts, G. (2013). Historical Introduction. In Langmuir-blodgett films. Springer

Science & Business Media.

 

Roberts, J. (2017). Sample Preparation and Experimental Techniques. In Ekp (Vol.

13, Issue 3, pp. 1576–1580). Springer.

https://doi.org/https://doi.org/10.1007/978-3-319-67891-7_3

 

Rosly, N. Z., Abdullah, A. H., Kamarudin, M. A., Ashari, S. E., & Alang Ahmad, S.

A. (2021). Adsorption of methylene blue dye by calix[6]arene-modified lead

sulphide (Pbs): Optimisation using response surface methodology. International

Journal of Environmental Research and Public Health, 18(2), 1–20.

https://doi.org/10.3390/ijerph18020397

 

Roy, D., Naskar, B., & Bala, T. (2021). Exploring Langmuir-Blodgett technique to

investigate effect of various subphase conditions on monolayers formed by

amphiphilic block co-polymers tetronic 701 and tetronic 90R4. Colloids and

Surfaces A: Physicochemical and Engineering Aspects, 625(March), 126924.

https://doi.org/10.1016/j.colsurfa.2021.126924

 

Safavi, M. S., Walsh, F. C., Surmeneva, M. A., Surmenev, R. A., & Allafi, J. K.

(2021). Electrodeposited Hydroxyapatite ‐ Based Biocoatings : Recent Progress

and Future Challenges.

 

Sardjono, R. E., & Rachmawati, R. (2017). Green Synthesis of Oligomer Calixarenes.

In K. Iyad & S. Hassan (Eds.), Green Chemical Processing and Synthesis. Intech

Open. https://doi.org/10.5772/67804

 

Sayed, M., & Pal, H. (2021). An overview from simple host-guest systems to

progressively complex supramolecular assemblies. Physical Chemistry Chemical

Physics, 23(46), 26085–26107. https://doi.org/10.1039/d1cp03556h

 

Sayin, S. (2021). Synthesis of New Quinoline-Conjugated Calixarene as a Fluorescent

Sensor for Selective Determination of Cu2+ Ion. Journal of Fluorescence, 31(4),

1143–1151. https://doi.org/10.1007/s10895-021-02749-6

 

Schalley, C. A. (2012). Introduction. In Analytical Methods in Supramolecular

Chemistry. John Wiley & Sons. https://doi.org/10.1002/9783527610273.ch1

 

Schlegel, H. B. (2011). Geometry optimization. Wiley Interdisciplinary Reviews:

Computational Molecular Science, 1(5), 790–809.

https://doi.org/10.1002/wcms.34

 

Schmitz, G., & Elm, J. (2020). Assessment of the DLPNO Binding Energies of

Strongly Noncovalent Bonded Atmospheric Molecular Clusters. ACS Omega,

5(13), 7601–7612. https://doi.org/10.1021/acsomega.0c00436

 

Seminario, J. M., & Politzer, P. (1995). Modern Density Functional Theory - A Tool

for Chemistry. In Theoretical and Computational Chemistry (Vol. 2). Elsevier.

http://www.sciencedirect.com/science/article/pii/S1380732305800391

 

Shetty, D., Jahović, I., Skorjanc, T., Erkal, T. S., Ali, L., Raya, J., Asfari, Z., Olson,

M. A., Kirmizialtin, S., Yazaydin, A. O., & Trabolsi, A. (2020). Rapid and

Efficient Removal of Perfluorooctanoic Acid from Water with Fluorine-Rich

Calixarene-Based Porous Polymers. ACS Applied Materials and Interfaces,

12(38), 43160–43166. https://doi.org/10.1021/acsami.0c13400

 

Shirshov, Y. M., Zynio, S. A., Matsas, E. P., Beketov, G. V., Prokhorovich, A. V.,

Venger, E. F., Markovskiy, L. N., Kalchenko, V. I., Soloviov, A. V., & Merker,

R. (1997). Optical parameters of thin calixarene films and their response to

benzene, toluene and chloroform adsorption. Supramolecular Science, 4(3–4),

491–494. https://doi.org/10.1016/S0968-5677(97)00033-3

 

Sowa, A., & Voskuhl, J. (2020). Host-guest complexes – Boosting the performance of

photosensitizers. International Journal of Pharmaceutics, 586, 119595.

https://doi.org/10.1016/j.ijpharm.2020.119595

 

Spesyvtseva, S. E. S., & Dholakia, K. (2016). Trapping in a Material World. ACS

Photonic, 3(5), 719–736.

https://doi.org/https://doi.org/10.1021/acsphotonics.6b00023

 

Stiefel, C., & Schwack, W. (2015). Photoprotection in changing times - UV filter

efficacy and safety, sensitization processes and regulatory aspects. International

Journal of Cosmetic Science, 37(1), 2–30. https://doi.org/10.1111/ics.12165

 

Stupp, S. I., & Palmer, L. C. (2014). Supramolecular chemistry and self-assembly in

organic materials design. Chemistry of Materials, 26(1), 507–518.

https://doi.org/10.1021/cm403028b

 

Sun, J., Rene, E. R., Tao, D., Lu, Y., Jin, Q., Lam, C. H. J., Leung, M. Y. ., & He, Y.

(2024). Degradation of organic UV filters in the water environment: A concise

review on the mechanism, toxicity, and technologies. Journal of Hazardous

Materials, 463.

 

Sun, L., Yuan, G., Gao, L., Yang, J., Chhowalla, M., Gharahcheshmeh, M. H.,

Gleason, K. K., Choi, Y. S., Hong, B. H., & Liu, Z. (2021). Chemical vapour

deposition. Nature Reviews Methods Primers, 0123456789.

https://doi.org/10.1038/s43586-020-00005-y

 

Supian, F. L., Azahari, N. A., Juahir, Y., Karim, N. F. N. A., & Naim, A. F. (2021).

Correlation of Langmuir Isotherm, Optical, Surface Potential and Morphological

Characterizations of Two Functionalized Dihydroxycalix[4]Arene for Lead

Cation Entrapment. Malaysian Journal of Microscopy, 17(2), 9–19.

 

Supian, F. L., Richardson, T. M., Kelleher, F., Ward, J. P., & McKee, V. (2010).

Interaction between Langmuir and Langmuir-Blodgett films of two

calix[4]arenes with aqueous copper and lithium ions. Langmuir, 26(13), 10906–

10912. https://doi.org/10.1021/la100808r

 

Swierczewski, M., & Bürgi, T. (2023). Langmuir and Langmuir–Blodgett Films of

Gold and Silver Nanoparticles. 39(6), 2135–2151.

 

Thomas, A. G., Jackman, M. J., Wagstaffe, M., Radtke, H., Syres, K., Adell, J., Lévy,

A., & Martsinovich, N. (2014). Adsorption studies of p-aminobenzoic acid on

the anatase TiO₂(101) surface. Langmuir : The ACS Journal of Surfaces and

Colloids, 30(41), 12306–12314. https://doi.org/10.1021/la5032619

 

Tim, B., Kotkowiak, M., Kowalska, N., Nowicka, A. B., & Lewandowski, W. (2023).

Influence of Gold Nanoparticle Assembly in Langmuir–Schaefer Monolayers on

the Surface-Enhanced Spectroscopy Response of a Nanoplatform. The Journal of

Physical Chemistry C, 127(23), 15978–15987.

 

Tsoumachidou, S., Lambropoulou, D., & Poulios, I. (2017). Homogeneous

photocatalytic oxidation of UV filter para-aminobenzoic acid in aqueous

solutions. Environmental Science and Pollution Research, 24(2), 1113–1121.

https://doi.org/10.1007/s11356-016-7434-2

 

Van Mourik, T., Bühl, M., & Gaigeot, M. P. (2014). Density functional theory across

chemistry, physics and biology. Philosophical Transactions of the Royal Society

A: Mathematical, Physical and Engineering Sciences, 372(2011).

https://doi.org/10.1098/rsta.2012.0488

 

Vaseghi, Z., & Nematollahzadeh, A. (2020). Green Synthesis of Nanomaterials for

Bioenergy Applications (T. C. Mokhena, M. J. John, M. A. Sibeko, V. C.

Agbakoba, M. J. Mochane, A. Mtibe, T. H. Mokhothu, T. S. Motsoeneng, M. M.

Phiri, M. J. Phiri, P. S. Hlangothi, & T. G. Mofokeng (eds.)). John Wiley & Sons

Ltd. https://doi.org/10.1007/978-981-13-9333-4_5

 

Vatankhah, C., Saki, M., & Jafargholinejad, S. (2015). Theoretical and experimental

investigation of quantum confinement effect on the blue shift in semiconductor

quantum dots. Oriental Journal of Chemistry, 31(2), 907–912.

https://doi.org/10.13005/ojc/310234

 

Vyas, G., Bhatt, S., & Paul, P. (2019). Synthesis of calixarene-capped silver

nanoparticles for colorimetric and amperometric detection of mercury (Hg II ,

Hg 0 ) [Research-article]. ACS Omega, 4(2), 3860–3870.

https://doi.org/10.1021/acsomega.8b03299

 

Wales, D. J., & Kitchen, J. A. (2016). Surface-based molecular self-assembly:

Langmuir-Blodgett films of amphiphilic Ln(III) complexes. Chemistry Central

Journal, 10(1), 1–9. https://doi.org/10.1186/s13065-016-0224-6

 

Wang, B., Yuan, S., Li, Y., Shi, L., & Wang, J. (2017). A new Dirac cone material: A

graphene-like Be3C2 monolayer. Nanoscale, 9(17), 5577–5582.

https://doi.org/10.1039/c7nr00455a

 

Wang, M. D., Yin, H., Landick, R., Gelles, J., & Block, S. M. (1997). Stretching

DNA with optical tweezers. Biophysical Journal, 72(3), 1335–1346.

https://doi.org/10.1016/S0006-3495(97)78780-0

 

Wei, D., Zhao, C., Khan, A., Sun, L., Ji, Y., Ai, Y., & Wang, X. (2019). Sorption

mechanism and dynamic behavior of graphene oxide as an effective adsorbent

for the removal of chlorophenol based environmental-hormones: A DFT and MD

simulation study. Chemical Engineering Journal, 375, 121964.

https://doi.org/10.1016/j.cej.2019.121964

 

Wheate, N. J. (2022). A review of environmental contamination and potential health

impacts on aquatic life from the active chemicals in sunscreen formulations.

Australian Journal of Chemistry, 75(4), 241–248.

https://doi.org/10.1071/CH21236

 

Wolf, Κ. L., Prahm, H., & Harms, H. (1937). Über den Ordnungszustand der

Moleküle in Flüssigkeiten. Zeitschrift Für Physikalische Chemie, 36B(1), 237–

287. https://doi.org/10.1515/zpch-1937-3618

 

Wong, Y. Y., Supian, F. L., Musa, M., Karim, N. F. N. A., & Naim, A. F. (2022).

Calixarenes as Host Molecules for Drug Carriers in the Cosmetic and Medical

Field. Macromolecular Research, 30(12), 853–862.

https://doi.org/10.1007/s13233-022-0094-9

 

Wu, B., Zhang, L., Jiang, B., Li, Q., Tian, C., Xie, Y., Li, W., & Fu, H. (2021).

Innenrücktitelbild: Ultrathin Porous Carbon Nitride Bundles with an Adjustable

Energy Band Structure toward Simultaneous Solar Photocatalytic Water Splitting

and Selective Phenylcarbinol Oxidation (Angew. Chem. 9/2021). Angewandte

Chemie, 133(9), 5003–5003. https://doi.org/10.1002/ange.202101234

 

Wu, D., Li, Y., Lu, G., Lin, Q., Wei, L., & Zhang, P. (2021). Removal of aqueous

para-aminobenzoic acid using a compartmental electro-peroxone process. Water

(Switzerland), 13(21), 1–13. https://doi.org/10.3390/w13212961

 

Wu, W., Gong, S., & Sun, Q. (2020). Electronic band structure phase diagram of 3D

carbon allotropes from machine learning. Diamond and Related Materials, 108,

107990. https://doi.org/10.1016/j.diamond.2020.107990

 

Wu, Y., Chen, X., Weng, K., Arramel, Jiang, J., Ong, W. J., Zhang, P., Zhao, X., &

Li, N. (2021). Highly Sensitive and Selective Gas Sensor Using Heteroatom

Doping Graphdiyne: A DFT Study. Advanced Electronic Materials, 7(7), 1–9.

https://doi.org/10.1002/aelm.202001244

 

Wu, Z., & Cohen, R. E. (2006). More accurate generalized gradient approximation for

solids. Physical Review B - Condensed Matter and Materials Physics, 73(23), 2–

7. https://doi.org/10.1103/PhysRevB.73.235116

 

Wunderlich, W. (2014). The Atomistic Structure of Metal/Ceramic Interfaces Is the

Key Issue for Developing Better Properties (Review). August.

https://doi.org/10.3390/met4030410

 

Xue, Y., Dong, W., Wang, X., Bi, W., Zhai, P., Li, H., & Nie, M. (2016). Degradation

of sunscreen agent p-aminobenzoic acid using a combination system of UV

irradiation, persulphate and iron(II). Environmental Science and Pollution

Research, 23(5), 4561–4568. https://doi.org/10.1007/s11356-015-5631-z

 

Yaacob, S. F. F. S., Jamil, A. K. M., Kamboh, M. A., Ibrahim, W. A. W., &

Mohamad, S. (2018). Fabrication of calixarene-grafted bio-polymeric magnetic

composites for magnetic solid phase extraction of non-steroidal antiinflammatory

drugs in water samples. PeerJ, 2018(7).

https://doi.org/10.7717/peerj.5108

 

Yang, H., Yuan, B., Zhang, X., & Scherman, O. A. (2014). Supramolecular chemistry

at interfaces: Host-guest interactions for fabricating multifunctional

biointerfaces. Accounts of Chemical Research, 47(7), 2106–2115.

https://doi.org/10.1021/ar500105t

 

Yang, R., Li, B., Lai, X., Yu, X., Xiao, B., Hu, S., Pang, H., Ma, H., Wang, X., &

Tan, L. (2021). An irregular-octagonal-prism-shaped host-guest supramolecular

network based on silicotungstate and manganese-complex for light-driven

hydrogen evolution. New Journal of Chemistry, 45(8), 3954–3959.

https://doi.org/10.1039/d0nj05245k

 

Yang, S., Wen, G., Pispas, S., & You, K. (2019). Effects of spreading and subphase

conditions on the interfacial behavior of an amphiphilic copolymer poly(nbutylacrylate)-

b-poly(acrylic acid). Polymer, 172, 66–74.

https://doi.org/10.1016/j.polymer.2019.03.060

 

Yang, X., Yuan, D., Hou, J., Sedgwick, A. C., Xu, S., James, T. D., & Wang, L.

(2021). Organic/inorganic supramolecular nano-systems based on host/guest

interactions. Coordination Chemistry Reviews, 428, 213609.

https://doi.org/10.1016/j.ccr.2020.213609

 

Yang, Y., Ren, Y. X., Chen, M., Arita, Y., & Rosales-Guzmán, C. (2021). Optical

trapping with structured light: A review. Advanced Photonics, 3(3), 1–40.

https://doi.org/10.1117/1.AP.3.3.034001

 

Yeng, M. S. M., Ayop, S. K., & Sasaki, K. (2023). Optical Trapping of a Single

Chloroform Microdroplet in Water. Jurnal Teknologi, 85(3), 117–123.

https://doi.org/10.11113/jurnalteknologi.v85.19303

 

Yilmaz, B., Aydin, N., & Bayrakci, M. (2018). Pesticide binding and urea-induced

controlled release applications with calixarene naphthalimide molecules by host–

guest complexation. Journal of Environmental Science and Health - Part B

Pesticides, Food Contaminants, and Agricultural Wastes, 53(10), 669–676.

https://doi.org/10.1080/03601234.2018.1474557

 

Yuksel, N., & Fellah, M. F. (2021). Host–guest complex properties of calix[4]arene

derivatives: a DFT study of adsorption and sensing of an anticancer drug, 5-

fluorouracil. Monatshefte Fur Chemie, 152(2), 217–228.

https://doi.org/10.1007/s00706-021-02736-4

 

Yuksel, N., Köse, A., & Fellah, M. F. (2021). The supramolecularly complexes of

calix[4]arene derivatives toward favipiravir antiviral drug (used to treatment of

COVID-19): a DFT study on the geometry optimization, electronic structure and

infrared spectroscopy of adsorption and sensing. Journal of Inclusion

Phenomena and Macrocyclic Chemistry, 101(1–2), 77–89.

https://doi.org/10.1007/s10847-021-01087-1

 

Yusof, M. F. M., Ayop, S. K., Supian, F. L., & Juahir, Y. (2020). Optical trapping of

organic solvents in the form of microdroplets in water. Chemical Physics Letters,

749, 137407. https://doi.org/10.1016/j.cplett.2020.137407

 

Zhang, Y., & Cheng, X. (2018). Hydrogen storage property of alkali and alkalineearth

metal atoms decorated C24 fullerene: A DFT study. Chemical Physics,

505(2018), 26–33. https://doi.org/10.1016/j.chemphys.2018.03.010

 

Zhang, Z., Li, L., An, D., Li, H., & Zhang, X. (2020). Triazine-based covalent organic

polycalix[4]arenes for highly efficient and reversible iodine capture in water.

Journal of Materials Science, 55(4), 1854–1864. https://doi.org/10.1007/s10853-

019-04164-6

 

Zhao, Z. M., Wang, Y., Han, J., Zhu, H. D., & An, L. (2015). Preparation and

characterization of amphiphilic calixarene nanoparticles as delivery carriers for

paclitaxel. Chemical and Pharmaceutical Bulletin, 63(3), 180–186.

https://doi.org/10.1248/cpb.c14-00699

 

Zhou, J., Chen, M., & Diao, G. (2013). Calix[4,6,8]arenesulfonates functionalized

reduced graphene oxide with high supramolecular recognition capability:

Fabrication and application for enhanced host-guest electrochemical recognition.

ACS Applied Materials and Interfaces, 5(3), 828–836.

https://doi.org/10.1021/am302289v

 

Zhou, Y., Ma, J., Gao, D., Li, W., Shi, J., & Ren, H. (2018). A novel chrome-free

tanning approach based on sulfonated tetraphenyl Calix[4]resorcinarene:

Preparation and application. Journal of Cleaner Production, 201, 668–677.

https://doi.org/10.1016/j.jclepro.2018.07.196


This material may be protected under Copyright Act which governs the making of photocopies or reproductions of copyrighted materials.
You may use the digitized material for private study, scholarship, or research.

Back to search page

Installed and configured by Bahagian Automasi, Perpustakaan Tuanku Bainun, Universiti Pendidikan Sultan Idris
If you have enquiries, kindly contact us at pustakasys@upsi.edu.my or 016-3630263. Office hours only.