Publicado

2019-04-01

Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate

Análisis en la huella dactilar de espectros FTIR de polímeros que contienen etileno

DOI:

https://doi.org/10.15446/dyna.v86n209.77513

Palabras clave:

vibration, intensity, overlapping, crystallinity, linear chains. (en)
vibración, intensidad, sobrelapadas, cristalinidad, cadenas lineales. (es)

Autores/as

The analysis of materials using Fourier transform infrared (FTIR) spectroscopy has a unique area called the fingerprint region for each compound. However, this area is almost never discussed because of its complexity due to the large number of signals that appear in it. In this work, the fingerprint region analysis of the ethylene–vinyl acetate copolymer (EVA) with different percentages of vinyl acetate (VA) (18%, 28%, 40%) was performed. In comparison with other instrumental techniques, the crystallinity and structural arrangement of the EVA copolymers were determined simply and economically. The crystallinities for EVA18, EVA28 and EVA40 were 24.39%, 6.95% and1.03%, respectively. In terms of structural ordering, the number of linear chains of EVA copolymer decreases as the concentration of VA increases, which favors the reduction of degrees of freedom and the formation of hydrogen bonds.

El análisis de los materiales por espectrometría infrarroja con transformada de Fourier (FTIR) poseen una zona llamada huella dactilar única para cada compuesto, sin embargo, esta zona casi nunca se discute por su complejidad debida al gran número de señales que en ella aparecen. En este trabajo se realizó el análisis de la huella dactilar del copolímero etileno-acetato de vinilo (EVA) con diferentes porcentajes de acetato de vinilo (VA) (18%, 28%, 40%). En comparación con otras técnicas instrumentales, la cristalinidad y el ordenamiento
estructural de los copolímeros de EVA fueron determinados de forma sencilla y económica. La cristalinidad para el EVA18, EVA28 y EVA40 fueron 24.39%, 6.95% y 1.03%, respectivamente. En cuanto al ordenamiento estructural, la cantidad de cadenas lineales del copolímero EVA disminuye conforme aumenta la concentración de vinil acetato (VA), lo cual favorece la disminución de los grados de libertad y la formación de puentes de hidrógeno.

Referencias

Fuentes-Navarta, M., Bosch-Ojeda, C. and Sánchez-Rojas, F.,

Application of medium infrared spectroscopy in process analytical

chemistry, Bol. Soc. Quím. Méx., 2(3), pp. 93-103, 2008.

Barraza-Garza, G., De la Rosa, L., Martínez-Martínez, A., Castillo-Michel, H., Cotte, M. and Alvarez-Parrilla, E., Infrared

microspectroscopy with Fourier transform (FTIRM) in the study of

biological systems, Rev. Latinoam. Quím., 41(3), pp. 125-148, 2013.

Aparicio-Marenco, D., Ariza-Daza, J., Calvo-Trujillo, M., Daza-

Cuello, J. and Echávez-Plata, E., Infrared spectroscopy: an alternative technique for the identification of microorganisms, Ciencia y Salud,4(1), pp. 123-131, 2012

Ashraf, A.I., Frederick, R.V., and Jacqueline, S., Fourier transform

infrared spectroscopy: principles and applications, in: Paré, J.R.J. and Bélanger, J.M.R., Techniques and Instrumentation in Analytical

Chemistry, Elsevier, 1997, pp. 93-139. DOI: 10.1016/S0167-

(97)80013-3

Skoog, D., Principles of instrumental analysis. México: Cengage

Learning Editores, 2007.

Pavia, D.L., Lampman, G.M., Kriz, G.S. and Vyvyan, J.A.,

Introduction to spectroscopy. Thomson Learning, Inc., USA, 2001.

Silverstein, R.M., Francis, X., Kiemle, D.J. and Bryce, D.L.,

Spectrometric identification of organic compounds, John Wiley &

Sons, New York, 2012.

Barrow, G., Introduction to molecular spectroscopy. McGraw-Hill,New York, 1962.

Drago, R.S., Physical methods in chemistry. Philadelphia: Saunders,1977.

Siegfried, W. and Reinhard H.H.N., Pharmaceutical applications of Mid-IR and Raman spectroscopy, Adv. Drug Deliv. Rev., 57(8), pp.1144-1170, 2005. DOI: 10.1016/j.addr.2005.01.022

Chalmers, J.M., Infrared spectroscopy in analysis of polymers and rubbers, in: Meyers, R.A. and Provder, T., Encyclopedia of Analytical Chemistry, Wiley, 2006. DOI: 10.1002/9780470027318.a2015

Florian, H., Govyadinov, A., Amarie, S., Nuansing, W., Keilmann, F. and Hillenbrand, R., Nano-FTIR absorption spectroscopy of molecular fingerprints at 20 nm spatial resolution, Nano Letters, 12(8), pp. 3973-3978, 2012. DOI: 10.1021/nl301159v

Bellamy, M.K., Using FTIR-ATR spectroscopy to teach the internal standard method, J. Chem. Educ., 87(12), pp. 1399-1401, 2010. DOI:10.1021/ed100544m.

Xiangdao, H., Songtao, L., Zheng, C. and Feipeng, X., Applications of Fourier transform infrared spectroscopy technologies on asphalt materials, Measurement, 121, pp. 304-316, 2018. DOI:10.1016/j.measurement.2018.03.001.

Seymour, R., Carraher, C.E. and Aereal-Guerra, R., Introduction to the chemistry of polymers. Reverté Ed., USA, 2002.

Pramanik, N., Mohapatra, S., Bhargava, P. and Pramanik, P., Chemical synthesis and characterization of hydroxyapatite (HAp)-poly (ethylene co vinyl alcohol) (EVA) nanocomposite using a phosphonic acid coupling agent for orthopedic applications, Mater. Sci. Eng., 29(1),228-236, 2009.

Qeiroz, A.A., Abraham, G.A. and Zazuco-Higa, O., Controlled release of 5-fluorouridine from radiation-crosslinked poly(ethylene-co-vinyl acetate) films, Acta Biomaterialia, 2(6), pp. 641-650, 2006.

Pandomos, E. and Martín-Madero, M.C., Problems of organic

structural determination by spectroscopy IR. España, 1979.

Almanza-Montero, O.A., Foamed polymers based on polyethylene and

ethylene vinyl acetate copolymer: general and cellular structure,

Momento, 23, pp. 1-20, 2001. DOI: 10.15446/mo

González-Cantellano, M.A. and Montaño-Zetina, L.M., Spectroscopy and its technology: a historical review and its importance for the 21st century, Lat. Am. J. Phys. Educ.,9(6), pp. 1-14, 2015.

Silverstein, R.M., Francis X.W. and Kiemle, D.J., Spectrometric

identification of organic compounds. Seventh Edition. John Wiley and Sons, New York, 2005.

Cómo citar

IEEE

[1]
A. Ramírez-Hernández, C. Aguilar-Flores, y A. Aparicio-Saguilán, «Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate», DYNA, vol. 86, n.º 209, pp. 198–205, abr. 2019.

ACM

[1]
Ramírez-Hernández, A., Aguilar-Flores, C. y Aparicio-Saguilán, A. 2019. Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate. DYNA. 86, 209 (abr. 2019), 198–205. DOI:https://doi.org/10.15446/dyna.v86n209.77513.

ACS

(1)
Ramírez-Hernández, A.; Aguilar-Flores, C.; Aparicio-Saguilán, A. Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate. DYNA 2019, 86, 198-205.

APA

Ramírez-Hernández, A., Aguilar-Flores, C. & Aparicio-Saguilán, A. (2019). Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate. DYNA, 86(209), 198–205. https://doi.org/10.15446/dyna.v86n209.77513

ABNT

RAMÍREZ-HERNÁNDEZ, A.; AGUILAR-FLORES, C.; APARICIO-SAGUILÁN, A. Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate. DYNA, [S. l.], v. 86, n. 209, p. 198–205, 2019. DOI: 10.15446/dyna.v86n209.77513. Disponível em: https://revistas.unal.edu.co/index.php/dyna/article/view/77513. Acesso em: 20 mar. 2026.

Chicago

Ramírez-Hernández, Aurelio, Celia Aguilar-Flores, y Alejandro Aparicio-Saguilán. 2019. «Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate». DYNA 86 (209):198-205. https://doi.org/10.15446/dyna.v86n209.77513.

Harvard

Ramírez-Hernández, A., Aguilar-Flores, C. y Aparicio-Saguilán, A. (2019) «Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate», DYNA, 86(209), pp. 198–205. doi: 10.15446/dyna.v86n209.77513.

MLA

Ramírez-Hernández, A., C. Aguilar-Flores, y A. Aparicio-Saguilán. «Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate». DYNA, vol. 86, n.º 209, abril de 2019, pp. 198-05, doi:10.15446/dyna.v86n209.77513.

Turabian

Ramírez-Hernández, Aurelio, Celia Aguilar-Flores, y Alejandro Aparicio-Saguilán. «Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate». DYNA 86, no. 209 (abril 1, 2019): 198–205. Accedido marzo 20, 2026. https://revistas.unal.edu.co/index.php/dyna/article/view/77513.

Vancouver

1.
Ramírez-Hernández A, Aguilar-Flores C, Aparicio-Saguilán A. Fingerprint analysis of FTIR spectra of polymers containing vinyl acetate. DYNA [Internet]. 1 de abril de 2019 [citado 20 de marzo de 2026];86(209):198-205. Disponible en: https://revistas.unal.edu.co/index.php/dyna/article/view/77513

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2. Raíssa T. R. Carvalho, Allan da Silva Santos, Anny Marry Teixeira Marques, Luiz C. M. Palermo, Claudia R. E. Mansur. (2024). Experimental Design to Optimize the Extraction and Properties of an Alternative Gum from Crotalaria Juncea Seeds. Journal of Polymers and the Environment, 32(4), p.1837. https://doi.org/10.1007/s10924-023-03068-6.

3. Kamil Kwieciński, Marta Chrószcz-Porębska, Izabela Barszczewska-Rybarek, Jarosław Żmudzki, Anna Mertas, Sebastian Jurczyk, Paweł Popielski, Grzegorz Chladek. (2025). Effect of Antimicrobial Filler on Ethylene-Vinyl Acetate (EVA) Composites Property. Materials, 18(21), p.4993. https://doi.org/10.3390/ma18214993.

4. Ahmed M.A. El-Seidy, Marwan A. Elbaset, Fatma A.A. Ibrahim, Sherif A. Abdelmottaleb Moussa, Samir AE Bashandy. (2023). Nano cerium oxide and cerium/zinc nanocomposites characterization and therapeutic role in combating obesity via controlling oxidative stress and insulin resistance in rat model. Journal of Trace Elements in Medicine and Biology, 80, p.127312. https://doi.org/10.1016/j.jtemb.2023.127312.

5. G. Trifeldaite-Baranauskiene, E. Stankute, A. Aniskevich, D. Zeleniakiene, K. Zukiene. (2024). Preparation and Characterisation of Composites from Industrial Waste: Wood Flour and Expanded Ethylene Vinyl Acetate. Mechanics of Composite Materials, 60(3), p.433. https://doi.org/10.1007/s11029-024-10201-6.

6. Raíssa Carvalho, Carolina Pedrosa, Alyce Leal, Luiz Palermo, Claudia Mansur. (2021). Extraction, characterization and rheological behavior of galactomannans in high salinity and temperature conditions. International Journal of Polymer Analysis and Characterization, 26(7), p.573. https://doi.org/10.1080/1023666X.2021.1930748.

7. Zsolt I. Németh, Rita Rákosa. (2023). Congruence Concept for Comparison of Spectra. Applied Spectroscopy, 77(4), p.350. https://doi.org/10.1177/00037028231152497.

8. Yan Ding, Mengxin Zhang, Zhiyu Zhou, Jing Jiao, Wei Huang, Hongyun Hu. (2025). Pyrolysis behavior of multi-component photovoltaic modules waste: A coupled STA-FTIR-MCC and modeling approach. Journal of Analytical and Applied Pyrolysis, 192, p.107292. https://doi.org/10.1016/j.jaap.2025.107292.

9. Md. Saddam Sheikh, A. H. Bhuiyan, Mohammad Jellur Rahman. (2023). Direct current conduction mechanism in the methyl acrylate–vinyl acetate composite thin films. Scientific Reports, 13(1) https://doi.org/10.1038/s41598-023-44413-y.

10. Victor de Carvalho Rodrigues, Iara Zanella Guterres, Beatriz Pereira Savi, Izabella Thaís Silva, Gislaine Fongaro, Gean Vitor Salmoria. (2022). 3D-Printed EVA Devices for Antiviral Delivery and Herpes Virus Control in Genital Infection. Viruses, 14(11), p.2501. https://doi.org/10.3390/v14112501.

11. Anna Król-Górniak, Viorica Railean, Paweł Pomastowski, Tomasz Płociński, Michał Gloc, Renata Dobrucka, Krzysztof Jan Kurzydłowski, Bogusław Buszewski. (2023). Comprehensive study upon physicochemical properties of bio-ZnO NCs. Scientific Reports, 13(1) https://doi.org/10.1038/s41598-023-27564-w.

12. F. Abd-El-Raoof, A.A. Hegazy, M.A. Rashwan, W.S. Mohamed, A. Tawfik. (2022). Dual-functional polymer-modified magnesium oxychloride cement pastes: Physico-mechanical, phase, and microstructure characterizations. Journal of Building Engineering, 57, p.104898. https://doi.org/10.1016/j.jobe.2022.104898.

13. Farida A. Ali, Binita Nanda, Laxmidhar Sahoo, Priyabrata Pattanaik, P. Ganga Raju Achary. (2022). Bend sensor based on conducting polymer for the detection of human physiology. Materials Today: Proceedings, 67, p.1097. https://doi.org/10.1016/j.matpr.2022.07.166.

14. Youngmin Moon, Heesu Kim, Minh Hai Nguyen, Chi Keung Song, Woo‐jin Song, Sangbaek Park. (2025). Harnessing Native Li2CO3 Layers on Li7La3Zr2O12 (LLZO) for High‐Performance Tri‐Layer Composite Electrolytes in Semi‐Solid‐State Batteries. Small, 21(50) https://doi.org/10.1002/smll.202509544.

15. Akram Fadhl Al-mahmodi, Yamuna Munusamy, Mahmood Riyadh Atta, Mathialagan Muniyadi, Sim Siong Leong. (2024). Optimization of synthesis parameters for polyamide 610: Strategic tailoring for superior latent heat performance. Surfaces and Interfaces, 51, p.104692. https://doi.org/10.1016/j.surfin.2024.104692.

16. Sinem Tunçer Çağlayan. (2025). Biopolymer-based oral films integrated with probiotic active compounds for improved health applications. Archives of Microbiology, 207(1) https://doi.org/10.1007/s00203-024-04207-w.

17. G. Vajitha, Kritika Jashrapuria, T. Pushparaj Gandhi, P. Lipika, Swatantra P. Singh, Shihabudheen M. Maliyekkal. (2025). Scalable and cost-effective ultra-dispersible graphene oxide blended ultrafiltration mixed matrix membrane: Assessment of mechanical, water flux, and anti-biofouling properties. Process Safety and Environmental Protection, 194, p.35. https://doi.org/10.1016/j.psep.2024.11.108.

18. Swayam Aryam Behera, Sugato Hajra, Swati Panda, Alok Kumar Sahu, Perumal Alagarsamy, Yogendra Kumar Mishra, Hoe Joon Kim, P. Ganga Raju Achary. (2024). Synergistic energy harvesting and humidity sensing with single electrode triboelectric nanogenerator. Ceramics International, 50(19), p.37193. https://doi.org/10.1016/j.ceramint.2024.07.110.

19. Yahya Kaya, Petek Balcı, Süleyman Özen, Ali Mardani, Ali Kara. (2025). Activation of Polypropylene (PP) Fiber Surface with 1-Vinyl-1,2,4-triazole and Vinyl Acetate: Synthesis, Characterization, and Application in Cementitious Systems. Materials, 18(5), p.1071. https://doi.org/10.3390/ma18051071.

20. Dmitriy A. Bazhanov, Uliana V. Nikulova, Ramil R. Khasbiullin, Nikita Yu. Budylin, Elizaveta V. Ermakova, Aleksey V. Shapagin. (2025). Ethylene-Vinyl Acetate Copolymer as a Polyfunctional Modifier for Low-Viscosity Photosensitive Compositions. Polymers, 17(20), p.2787. https://doi.org/10.3390/polym17202787.

21. MONA F. ALI, HALA A. M. AFIFI, AML M. LOTFY. (2021). ANALYTICAL INVESTIGATIONS ON A FIRED STUCCO WINDOW IN THE ISLAMIC ART MUSEUM STORE OF CAIRO, EGYPT. Journal of Science and Arts, 21(3), p.789. https://doi.org/10.46939/J.Sci.Arts-21.3-b01.

22. Brenda Arias Cárdenas, Ana Maria Lacasta, Laia Haurie, Antonia Navarro. (2025). Bio-Based Building Materials - Proceedings of ICBBM 2025. RILEM Bookseries. 61, p.347. https://doi.org/10.1007/978-3-031-92874-1_28.

23. Swayam Aryam Behera, Hang-Gyeom Kim, Il Ryu Jang, Sugato Hajra, Swati Panda, Naratip Vittayakorn, Hoe Joon Kim, P. Ganga Raju Achary. (2024). Triboelectric nanogenerator for self-powered traffic monitoring. Materials Science and Engineering: B, 303, p.117277. https://doi.org/10.1016/j.mseb.2024.117277.

24. Victor V. Kislyuk, Vladyslav M. Shyvaniuk, Volodymyr V. Trachevskij, Svitlana M. Ostapyuk, Yuriy A. Polushkin, Sergiy O. Kotrechko. (2022). Mechanical properties of the encapsulant material for photovoltaics. Journal of Materials Science, 57(45), p.21117. https://doi.org/10.1007/s10853-022-07900-7.

25. Songita Sonowal, Ram Prasad. (2024). Exploring the effect of tea dust magnetic biochar on agricultural crops grown in polycyclic aromatic hydrocarbon contaminated soil. Green Processing and Synthesis, 13(1) https://doi.org/10.1515/gps-2024-0109.

26. Alejandro Restrepo Carmona, Henry A. Colorado Lopera. (2022). A new composite made from Luffa Cylindrica and ethylene vinyl acetate (EVA): Mechanical and structural characterization for its use as Mouthguard (MG). Journal of the Mechanical Behavior of Biomedical Materials, 126, p.105064. https://doi.org/10.1016/j.jmbbm.2021.105064.

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28. Kitae Park, Jamilur R. Ansari, Jongchul Seo. (2025). Synthesis of white carbon quantum dots for the upcycling of highly durable olefin plastics. Materials Today Nano, 31, p.100670. https://doi.org/10.1016/j.mtnano.2025.100670.

29. Folayemi J. Isaac-Bamgboye. (2026). Citrus Fruit Processing By-Products. Methods and Protocols in Food Science. , p.117. https://doi.org/10.1007/978-1-0716-5088-2_11.

30. Thattantavide Anju, Golla Nagaraju Gari Saritha, Nirala Ramchiary, Ajay Kumar. (2024). Assessing the impact of different cooking methods on nutrients, phytochemicals and antioxidant activity of traditional food plants. Food Chemistry Advances, 4, p.100677. https://doi.org/10.1016/j.focha.2024.100677.

31. Joseph M. Slocik, Patrick B. Dennis, Zhifeng Kuang, Anthony Pelton, Rajesh R. Naik. (2021). Creation of stable water-free antibody based protein liquids. Communications Materials, 2(1) https://doi.org/10.1038/s43246-021-00222-2.

32. Tilottoma Kargupta, N Pooja, Md. Hafizur Rahman, Inesh Vij, Rajib Biswas, Sanchita Roy, Nirmal Mazumder. (2025). An insight into thermal, chemical, and structural characterization of biopolymers. Discover Applied Sciences, 7(8) https://doi.org/10.1007/s42452-025-07549-2.

33. G. Trifeldaite-Baranauskiene, E. Stankute, A. Aniskevich, D. Zeleniakiene, K. Zukiene. (2024). Preparation and Characterisation of Composites from Industrial Waste: Wood Flour and Expanded Ethylene Vinyl Acetate. Mechanics of Composite Materials, https://doi.org/10.1007/s11029-024-10202-5.

34. A K M Mashud Alam, Chunhui Xiang. (2025). Development of a Colorimetric Polydiacetylene Nanocomposite Fiber Sensor for Selective Detection of Organophosphate Pesticides. ACS Omega, 10(12), p.12346. https://doi.org/10.1021/acsomega.4c11365.

35. Jorge González-Morales, Jadra Mosa, Mario Aparicio. (2026). Bifunctional platinum group metal-free iron–manganese catalyst for long-term rechargeable zinc-air batteries. Boletín de la Sociedad Española de Cerámica y Vidrio, 65(2), p.100489. https://doi.org/10.1016/j.bsecv.2026.100489.

36. Valentina Antonaci, Gaia de Marzo, Laura Blasi, Virgilio Brunetti, Enrico Binetti, Luca Fachechi, Sergio Marras, Antonio Qualtieri, Francesco Rizzi, Massimo De Vittorio. (2026). Biodegradable chitosan-cellulose and sub-spherical nanocrystals composite piezoelectric thin film. npj Flexible Electronics, https://doi.org/10.1038/s41528-026-00550-8.

37. Fatemeh Nejabati, Homeira Ebrahimzadeh. (2023). Electrospun nanofibers for extraction of thymoquinone from Nigella-Stevia prior to detection using electrochemical biosensor based on GCE/rGO/CuO. Microchemical Journal, 189, p.108545. https://doi.org/10.1016/j.microc.2023.108545.

38. Nathan G. Brady, Shamus L. O'Leary, Garrett C. Moormann, Manish K. Singh, John Watt, George D. Bachand. (2023). Mycosynthesis of Zinc Oxide Nanoparticles Exhibits Fungal Species Dependent Morphological Preference. Small, 19(15) https://doi.org/10.1002/smll.202205799.

39. O.N. Madimutsa, L. Macheka, F. Matiza Ruzengwe, J. Mubaiwa, F.A. Manditsera. (2023). Effects of seasonal variation and geographical location on the nutritional composition of mopane worm (Gonimbrasia belina). Journal of Insects as Food and Feed, 9(10), p.1297. https://doi.org/10.3920/JIFF2022.0157.

40. Sebastian Bruckschlögl, Chaojie Cheng, Peter Thissen, Benjamin Busch, Christoph Hilgers, Frank Dehn. (2026). Hydrogen reactivity with wellbore and polymer-modified cements: experimental insights for safe underground hydrogen storage. International Journal of Hydrogen Energy, 210, p.153578. https://doi.org/10.1016/j.ijhydene.2026.153578.

41. Chandra Prakash Gocher, Nancy Pandita, Rudra Prosad Choudhury, Vishnupriya Bhakthavatsalam. (2022). Understanding microstructural heterogeneity in low and high molecular weight fractions of polydisperse polyisobutylene by SEC and NMR for its reactivity. Journal of Polymer Research, 29(11) https://doi.org/10.1007/s10965-022-03289-8.

42. Stefano Radice, Domenico Ferrari, Stefano Millefanti, Marco Gregori. (2025). PVDC multilayer sorting challenge: A spectroscopy study and on field application. Sustainable Chemistry for the Environment, 9, p.100188. https://doi.org/10.1016/j.scenv.2024.100188.

43. Bipindra Pandey, Shankar Thapa, Mahalakshmi Suresha Biradar, Bhoopendra Singh, Jaya Bahadur Ghale, Pramod Kharel, Prabhat Kumar Jha, Ram Kishor Yadav, Sujan Dawadi, Poojashree V., Ghulam Mustafa. (2024). LC-MS profiling and cytotoxic activity of Angiopteris helferiana against HepG2 cell line: Molecular insight to investigate anticancer agent. PLOS ONE, 19(12), p.e0309797. https://doi.org/10.1371/journal.pone.0309797.

44. Md Saddam Sheikh, Md Juel Sarder, A.H. Bhuiyan, Mohammad Jellur Rahman. (2023). Structural and optical behaviours of methyl acrylate-vinyl acetate composite thin films synthesized under dynamic low-pressure plasma. Heliyon, 9(8), p.e18524. https://doi.org/10.1016/j.heliyon.2023.e18524.

45. Abdelkarim Chaouiki, Maryam Chafiq, Young Gun Ko. (2023). Nature-inspired architecture combining organic–inorganic frameworks: Unique structure and active sites toward a stable anti-corrosion coating. Applied Materials Today, 32, p.101852. https://doi.org/10.1016/j.apmt.2023.101852.

46. Basman Shareef, Huda Ibrahim Al Qadhi , Shayma'a Jamal Ahmed, Mohammed Amran, Zaid Osama Ibrahim. (2023). Implementation of Eruca sativa Extract for the Preparation of Nano-Selenium Particles. Al-Rafidain Journal of Medical Sciences ( ISSN 2789-3219 ), 5, p.26. https://doi.org/10.54133/ajms.v5i.141.

47. Tauana Batistella, Maria Johann Fensterseifer, Loise Silveira da Silva, Gustavo Ferrari, Gean Vitor Salmoria. (2026). Investigation on 3D printing and injection molding of intrauterine devices with antimicrobial and anticancer activity. The International Journal of Advanced Manufacturing Technology, https://doi.org/10.1007/s00170-026-17733-2.

48. Krzysztof Przybył, Krzysztof Koszela, Franciszek Adamski, Katarzyna Samborska, Katarzyna Walkowiak, Mariusz Polarczyk. (2021). Deep and Machine Learning Using SEM, FTIR, and Texture Analysis to Detect Polysaccharide in Raspberry Powders. Sensors, 21(17), p.5823. https://doi.org/10.3390/s21175823.

49. Juwairiya Tanveer, Debmalya Banerjee, Baishali Dey, Deblu Sahu, J. Sivaraman, Maciej Jarzebski, Floirendo Flores, Doman Kim, Hayeong Kim, P. Balasubramanian, Kunal Pal. (2025). Selected materials techniques for evaluation of attributes of sourdough bread with Kombucha SCOBY. REVIEWS ON ADVANCED MATERIALS SCIENCE, 64(1) https://doi.org/10.1515/rams-2025-0133.

50. V. A. Poluektova, N. I. Cherkashina, E. P. Kozhanova, D. S. Matveenko. (2023). Innovations and Technologies in Construction. Lecture Notes in Civil Engineering. 307, p.134. https://doi.org/10.1007/978-3-031-20459-3_17.

51. Sai Teja Lanka, Niclas Galih Anak Moses, Raja Rajeswary Suppiah, Belladonna Troxylon Maulianda. (2022). Physio-chemical interaction of Ethylene-Vinyl Acetate copolymer on bonding ability in the cementing material used for oil and gas well. Petroleum Research, 7(3), p.341. https://doi.org/10.1016/j.ptlrs.2021.10.003.

52. Nada Hussien Ielewi, Faiza M. Abdul-Ameer. (2025). The Effect of Adding Bioactive Glass Infused with Strontium on the Surface Hardness and Surface Roughness Properties of a Heat-Cured Acrylic-Based Soft Liner. Prosthesis, 7(4), p.69. https://doi.org/10.3390/prosthesis7040069.

53. Fanny Traon, Yves Grohens, Yves-Marie Corre. (2022). Entanglement density, macromolecular orientation, and their effect on elastic strain recovery of polyolefin films. Journal of Plastic Film & Sheeting, 38(2), p.306. https://doi.org/10.1177/87560879211058768.

54. Tendani Mphaga, T. N. Mhlongo, Sithembele Zikalala, James Topkin. (2023). Identification and quantification of microplastics in wastewater treatment plants by spectroscopic and microscopic techniques in Johannesburg East, South Africa. Water Practice & Technology, 18(12), p.3124. https://doi.org/10.2166/wpt.2023.215.

55. R. Perez-Gonzalez, E. Araujo, W. Ge, S. Cherepanov, A. Zakhidov, V. Rodriguez-Gonzalez, A. Encinas, J. Oliva. (2020). Carbon nanotube anodes decorated with Ag NWs/Ni(OH)2 NWs for efficient semitransparent flexible solid state supercapacitors. Electrochimica Acta, 354, p.136684. https://doi.org/10.1016/j.electacta.2020.136684.

56. Kitae Park, Kambiz Sadeghi, Pradeep Kumar Panda, Jongwon Seo, Jongchul Seo. (2022). Ethylene vinyl acetate/low-density polyethylene/oyster shell powder composite films: Preparation, characterization, and antimicrobial properties for biomedical applications. Journal of the Taiwan Institute of Chemical Engineers, 134, p.104301. https://doi.org/10.1016/j.jtice.2022.104301.

57. D. H. Cuate-Gomez, J. M. Lugo, L. Treviño-Yarce, R. D. Maldonado, A. Garzón-Román. (2024). Optical and morphological characterization of erbium phthalocyanine thin films on unpolished/polished substrates for enhanced solar water heating efficiency. Emergent Materials, 7(5), p.2055. https://doi.org/10.1007/s42247-023-00615-8.

58. Victor Kislyuk, Vladyslav Shyvaniuk, Sergiy Kotrechko. (2025). Creep lifetime of ethylene vinyl acetate co-polymer film after pre-load relaxation. Polymer Bulletin, 82(5), p.1499. https://doi.org/10.1007/s00289-024-05567-5.

59. Eduard-Marius Lungulescu, Radu Setnescu, Sorin Ilie, Mauro Taborelli. (2022). On the Use of Oxidation Induction Time as a Kinetic Parameter for Condition Monitoring and Lifetime Evaluation under Ionizing Radiation Environments. Polymers, 14(12), p.2357. https://doi.org/10.3390/polym14122357.

60. Giulia Tamburini, Stefano Bertagnoli, Giulia Tarricone, Sergio Piva, Adele Sassella, Roberto Lorenzi, Alberto Paleari. (2023). Early stages of X-ray induced molecular unit modifications in poly(lactic acid). Polymer Degradation and Stability, 216, p.110485. https://doi.org/10.1016/j.polymdegradstab.2023.110485.

61. Zhang Ru Bong, Rohan Mahendra Shah, Xavier Wezen Chee, Siaw San Hwang, Irine Runnie Henry Ginjom. (2024). Simple and Rapid Characterization of Sarawak Stingless Bee Honey Using Melissopalynological and ATR-FTIR Analysis. Food Analytical Methods, 17(5), p.773. https://doi.org/10.1007/s12161-024-02608-7.

62. Gustavo Ferrari, Loise Silveira da Silva, Tauana Batistella, Sophia Mannes, João Pedro Vaz Silveira, Caio Prange Piva, Luiz Alberto Kanis, Gean Vitor Salmoria. (2025). 3D printing of intrauterine device loaded with silver sulfadiazine to the treatment of fungal diseases. The International Journal of Advanced Manufacturing Technology, 137(1-2), p.105. https://doi.org/10.1007/s00170-025-15127-4.

63. Madeleine Ewing, Anne Carter, Gillian Osmond. (2021). Conservation of a Termite-Damaged Acrylic Painting: Treatment Solutions for Gordon Bennett’s Number three (2004). AICCM Bulletin, 42(2), p.118. https://doi.org/10.1080/10344233.2022.2104548.

64. Fatemeh Nejabati, Shima Amini, Homeira Ebrahimzadeh. (2023). Electrospun PVC/EVA/CS/Str nanofibers: an efficient sorbent for extraction of trace level of Atrazine and Ametryn in food samples. Chemical Papers, 77(11), p.6991. https://doi.org/10.1007/s11696-023-02991-1.

65. Renu Garhwal, Anuradha Bhardwaj, Harish Kumar, Karnam Sangwan, Ankur Kumari, Bhavya, Manjjri Singal, Varij Nayan, Yash Pal, Tarun Kumar Bhattacharya, B. N. Tripathi. (2025). Biochemical, dielectric and surface characteristics of freeze-dried donkey milk powder. Food and Agricultural Immunology, 36(1) https://doi.org/10.1080/09540105.2024.2442358.

66. Francesca Ambroselli, Fabiana Canini, Luca Lanteri, Martina Marconi, Claudia Mazzuca, Claudia Pelosi, Vittorio Vinciguerra, Elizabeth Wicks, Laura Zucconi. (2023). A Hydroalcoholic Gel-Based Disinfection System for Deteriogenic Fungi on the Contemporary Mixed Media Artwork Poesia by Alessandro Kokocinski. Heritage, 6(3), p.2716. https://doi.org/10.3390/heritage6030144.

67. Guoqin Luo, Jiashan Jiang, Shiyu Wei, Chao Huang, Dongmei Chen, Bixue Zhu, Shunlin Zhang. (2024). Introducing sulfonic acid polymers into MOF nanochannels for ultra-high Ba2+ adsorption capacity and proton conductivity. Separation and Purification Technology, 343, p.127133. https://doi.org/10.1016/j.seppur.2024.127133.

68. Seyed Mohammadsadegh Jafari Alavi, Zahra Maghsoud, Parisa Fatemi Khadar, Suzan Abrishami. (2025). Designing styrene-acrylate interpenetrating polymer networks with tunable damping and acoustic properties using waterborne core-shell nanoparticles. Progress in Organic Coatings, 207, p.109392. https://doi.org/10.1016/j.porgcoat.2025.109392.

69. Mohammad Arafat, Paris Fouladian, Anthony Wignall, Yunmei Song, Ankit Parikh, Hugo Albrecht, Clive A. Prestidge, Sanjay Garg, Anton Blencowe. (2020). Development and In Vitro Evaluation of 5-Fluorouracil-Eluting Stents for the Treatment of Colorectal Cancer and Cancer-Related Obstruction. Pharmaceutics, 13(1), p.17. https://doi.org/10.3390/pharmaceutics13010017.

70. Navneet Sood, Mithilesh Kumar Jha, Shailendra Bajpai. (2021). Studies on the effect of low density polyethylene on ethylene vinyl acetate/styrene butadiene styrene blends for yoga mat applications. SPE Polymers, 2(4), p.325. https://doi.org/10.1002/pls2.10050.

71. Prapatsorn Kaewkam, Apichaya Kanchanapaetnukul, Janista Khamyan, Nattapon Phadmanee, Kun-Yi Andrew Lin, Krisana Kobwittaya, Sanya Sirivithayapakorn. (2022). UV-assisted TiO2 photocatalytic degradation of virgin LDPE films: Effect of UV-A, UV-C, and TiO2. Journal of Environmental Chemical Engineering, 10(4), p.108131. https://doi.org/10.1016/j.jece.2022.108131.

72. Marcelo Assis, Luiz Gustavo P. Simoes, Guilherme C. Tremiliosi, Dyovani Coelho, Daniel T. Minozzi, Renato I. Santos, Daiane C. B. Vilela, Jeziel Rodrigues do Santos, Lara Kelly Ribeiro, Ieda Lucia Viana Rosa, Lucia Helena Mascaro, Juan Andrés, Elson Longo. (2021). SiO2-Ag Composite as a Highly Virucidal Material: A Roadmap that Rapidly Eliminates SARS-CoV-2. Nanomaterials, 11(3), p.638. https://doi.org/10.3390/nano11030638.

73. Khodor I. Nasser, José M. Liñeira del Río, Enriqueta R. López, Josefa Fernández. (2020). Synergistic effects of hexagonal boron nitride nanoparticles and phosphonium ionic liquids as hybrid lubricant additives. Journal of Molecular Liquids, 311, p.113343. https://doi.org/10.1016/j.molliq.2020.113343.

74. Catarina Santos, Ana Ramos, Ângelo Luís, Maria E. Amaral. (2023). Production and Characterization of k-Carrageenan Films Incorporating Cymbopogon winterianus Essential Oil as New Food Packaging Materials. Foods, 12(11), p.2169. https://doi.org/10.3390/foods12112169.

75. Oznur Yildirim, Dogukan Tunay, Bestami Ozkaya. (2023). Optimization of enzymatic hydrolysis conditions of chemical pretreated cotton stalk using response surface methodology for enhanced bioethanol production yield. Biomass Conversion and Biorefinery, 13(8), p.6623. https://doi.org/10.1007/s13399-021-01692-7.

76. Mohd Khairul Afiq, Hoo Tien Nicholas Kuan, Christopher Joyle Indor. (2025). Mechanical Properties of Durian/Luffa Fiber Reinforced Polymer Composite. Key Engineering Materials, 1007, p.9. https://doi.org/10.4028/p-gv0C48.

77. Colette Breheny, Declan Mary Colbert, Gilberto Bezerra, Joseph Geever, Luke M. Geever. (2025). UV-Induced Aging in Thermochromic Pigment-Integrated Food-Grade Polymers: A Performance Assessment. Applied Sciences, 15(11), p.6039. https://doi.org/10.3390/app15116039.

78. Amirhossein Karimi, Gilberto S. N. Bezerra, Clement L. Higginbotham, John G. Lyons. (2026). Evaluation of the Drug–Polymer Compatibility and Dissolution Behaviour of Fenbendazole–Soluplus® Solid Dispersions Prepared by Hot-Melt Extrusion. Polymers, 18(3), p.333. https://doi.org/10.3390/polym18030333.

79. Joana Eliza de Santana, Antônio Elias dos Santos Neto, Fábio Gabriel Silva de Andrade, Aldebarã Fausto Ferreira, Marcos Gomes Ghislandi, Maurício Alves da Motta Sobrinho. (2026). Waste-derived zeolite from sugarcane bagasse ash and water treatment plant sludge for sustainable industrial dye removal. Environmental Science and Pollution Research, 33(7), p.2852. https://doi.org/10.1007/s11356-026-37455-y.

80. Sefa Celik, Sevim Akyuz, Aysen E. Ozel. (2023). Development, Properties, and Industrial Applications of 3D Printed Polymer Composites. Advances in Chemical and Materials Engineering. , p.170. https://doi.org/10.4018/978-1-6684-6009-2.ch010.

81. Prachya Watasit, Suparat Rukchonlatee, Artit Ausavasukhi, Chonlada Ritvirulh, Tawan Sooknoi. (2021). AtmosphericCO2/CH4permeability ofEVAcopolymer/SiO2composite membrane for biogas purification. Journal of Applied Polymer Science, 138(42) https://doi.org/10.1002/app.51229.

82. Opa Fajar Muslim, Ariadne Lakshmidevi Juwono, Dwi Novriadi, Tulus Tulus. (2021). Physical Properties of Polyethylene and Ethylene Vinyl Acetate Foam Mixtures. Materials Science Forum, 1028, p.255. https://doi.org/10.4028/www.scientific.net/MSF.1028.255.

83. Mohammed Fuseini, Moustafa Mahmoud Yousry Zaghloul, Marwa F. Elkady, Ahmed H. El-Shazly. (2022). Evaluation of synthesized polyaniline nanofibres as corrosion protection film coating on copper substrate by electrophoretic deposition. Journal of Materials Science, 57(10), p.6085. https://doi.org/10.1007/s10853-022-06994-3.

84. Fakhri-Eddin N. Lahfaidh, Nathanael Guigo, Luc Vincent, Nicolas Sbirrazzuoli. (2025). Shedding light on the impact of a dissolution-precipitation recycling process on crystallization and thermal stability of PBS. Polymer Testing, 150, p.108924. https://doi.org/10.1016/j.polymertesting.2025.108924.

85. Oumaima Bendalahcen, Siham Ez-Zahraoui, Rachid Bouhfid, Jones Alami, Mounir El Achaby, Fatima-Zahra Semlali. (2025). Valorization of purified mining phosphate sludge as a functional filler in ethylene-vinyl acetate–coated cellulose-based packaging papers. International Journal of Biological Macromolecules, 333, p.148853. https://doi.org/10.1016/j.ijbiomac.2025.148853.

86. Woo-Hyun Kim, Won-Jo Choi, Jeong-Eun Kim, Joonho Choi, Yong-Deok Hong, Jin Nam, Won-Seok Park, Soon-Mi Shim. (2023). Kinetic conversion of BIOGF1K enriched in compound K from in vitro 3-D human tissue model. Current Research in Pharmacology and Drug Discovery, 5, p.100165. https://doi.org/10.1016/j.crphar.2023.100165.

87. Farnaz Hadizadeh, Shahruz Nasirian. (2023). A flexible self-powered ultra-violet photodetector based on sandwiched zinc oxide nanorods between polyaniline layers. Journal of Materials Science: Materials in Electronics, 34(34) https://doi.org/10.1007/s10854-023-11584-3.

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