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Effect of Polyethylene Glycol Methyl Ether Methacrylate on the Biodegradability of Polyvinyl Alcohol/Starch Blend Films

Тип публикацииJournal Article
Дата публикации2023-07-26
SCImago Q1
WOS Q1
БС1
SJR0.928
CiteScore9.7
Impact factor4.9
ISSN20734360
General Chemistry
Polymers and Plastics
Краткое описание

Blend copolymers (PVA/S) were grafted with polyethylene glycol methyl methacrylate (PEGMA) with different ratios. Potassium persulfate was used as an initiator. The blend copolymer (PVA/S) was created by combining poly(vinyl alcohol) (PVA) with starch (S) in various ratios. The main idea was to study the effect of different ratios of the used raw materials on the biodegradability of plastic films. The resulting polymers (PVA/S/PEGMA) were analyzed using FTIR spectroscopy to investigate the hydrogen bond interaction between PVA, S, and PEGMA in the mixtures. TGA and SEM analyses were used to characterize the polymers (PVA/S/AA). The biodegradability and mechanical properties of the PVA/S/PEGMA blend films were evaluated. The findings revealed that the mechanical properties of the blend films are highly influenced by PEGMA. The time of degradation of the films immersed in soil and Coca-Cola increases as the contents of PVA and S and the molecular weight (MW) of PEGMA increase in the terpolymer. The M8 sample (PVA/S/PEGMA in the ratio of 3:1:2, respectively) with a MW of 950 g/mol produced the lowest elongation at break (67.5%), whereas M1 (PVA/S/PEGMA in the ratio of 1:1:1, respectively) with a MW of 300 g/mol produced the most (150%). The film’s tensile strength and elongation at break were improved by grafting PEGMA onto the blending polymer (PAV-b-S). Tg and Tm increased when the PEGMA MW increased from 300 to 950. Tg (48.4 °C) and Tm (190.9 °C) were the lowest in M1 (300), while Tg (84.8 °C) and Tm (190.9 °C) were greatest in M1 (950) at 209.3 °C. The increased chain and molecular weight of PEGMA account for the increase in Tg and Tm of the copolymers.

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Carbohydrate Polymer Technologies and Applications
1 публикация, 12.5%
Polymers
1 публикация, 12.5%
Journal of Polymer Research
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Biomaterials Advances
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Inorganic Chemistry
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Polymer Crystallization
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Journal of Food Science and Technology
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Applied Physics A: Materials Science and Processing
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ГОСТ |
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Iskalieva A. et al. Effect of Polyethylene Glycol Methyl Ether Methacrylate on the Biodegradability of Polyvinyl Alcohol/Starch Blend Films // Polymers. 2023. Vol. 15. No. 15. p. 3165.
ГОСТ со всеми авторами (до 50) Скопировать
Iskalieva A., Mateyev E. Z., Azzam K. M. A., Ainakulova D., Yerbolat Y., Negim E. S., Ibrahim M., Yeligbayeva G. Effect of Polyethylene Glycol Methyl Ether Methacrylate on the Biodegradability of Polyvinyl Alcohol/Starch Blend Films // Polymers. 2023. Vol. 15. No. 15. p. 3165.
RIS |
Цитировать
TY - JOUR
DO - 10.3390/polym15153165
UR - https://doi.org/10.3390/polym15153165
TI - Effect of Polyethylene Glycol Methyl Ether Methacrylate on the Biodegradability of Polyvinyl Alcohol/Starch Blend Films
T2 - Polymers
AU - Iskalieva, Asylzat
AU - Mateyev, Esmurat Z.
AU - Azzam, Khaldun M A
AU - Ainakulova, Dana
AU - Yerbolat, Yerzhanov
AU - Negim, El Sayed
AU - Ibrahim, Mohamad
AU - Yeligbayeva, Gulzhakhan
PY - 2023
DA - 2023/07/26
PB - MDPI
SP - 3165
IS - 15
VL - 15
PMID - 37571059
SN - 2073-4360
ER -
BibTex |
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BibTex (до 50 авторов) Скопировать
@article{2023_Iskalieva,
author = {Asylzat Iskalieva and Esmurat Z. Mateyev and Khaldun M A Azzam and Dana Ainakulova and Yerzhanov Yerbolat and El Sayed Negim and Mohamad Ibrahim and Gulzhakhan Yeligbayeva},
title = {Effect of Polyethylene Glycol Methyl Ether Methacrylate on the Biodegradability of Polyvinyl Alcohol/Starch Blend Films},
journal = {Polymers},
year = {2023},
volume = {15},
publisher = {MDPI},
month = {jul},
url = {https://doi.org/10.3390/polym15153165},
number = {15},
pages = {3165},
doi = {10.3390/polym15153165}
}
MLA
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Iskalieva, Asylzat, et al. “Effect of Polyethylene Glycol Methyl Ether Methacrylate on the Biodegradability of Polyvinyl Alcohol/Starch Blend Films.” Polymers, vol. 15, no. 15, Jul. 2023, p. 3165. https://doi.org/10.3390/polym15153165.
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