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volume 13 issue 15 pages 2512

Mechanism of Post-Radiation-Chemical Graft Polymerization of Styrene in Polyethylene

Publication typeJournal Article
Publication date2021-07-30
scimago Q1
wos Q1
SJR0.918
CiteScore9.7
Impact factor4.9
ISSN20734360
General Chemistry
Polymers and Plastics
Abstract

Structural and morphological features of graft polystyrene (PS) and polyethylene (PE) copolymers produced by post-radiation chemical polymerization have been investigated by methods of X-ray microanalysis, electron microscopy, DSC and wetting angles measurement. The studied samples differed in the degree of graft, iron(II) sulphate content, sizes of PE films and distribution of graft polymer over the polyolefin cross section. It is shown that in all cases sample surfaces are enriched with PS. As the content of graft PS increases, its concentration increases both in the volume and on the surface of the samples. The distinctive feature of the post-radiation graft polymerization is the stepped curves of graft polymer distribution along the matrix cross section. A probable reason for such evolution of the distribution profiles is related to both the distribution of peroxide groups throughout the sample thickness and to the change in the monomer and iron(II) salt diffusion coefficients in the graft polyolefin layer. According to the results of electron microscope investigations and copolymer wettability during graft polymerization, a heterogeneous system is formed both in the sample volume and in the surface layer. It is shown that the melting point, glass transition temperature and degree of crystallinity of the copolymer decreases with the increasing proportion of graft PS. It is suggested that during graft polymerization a process of PE crystallite decomposition (melting) and enrichment of the amorphous phase of graft polymer by fragments of PE macromolecules occurs spontaneously. The driving force of this process is the osmotic pressure exerted by the phase network of crystallites on the growing phase of the graft PS.

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GOST |
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GOST Copy
Chalykh A. E. et al. Mechanism of Post-Radiation-Chemical Graft Polymerization of Styrene in Polyethylene // Polymers. 2021. Vol. 13. No. 15. p. 2512.
GOST all authors (up to 50) Copy
Chalykh A. E., Tverskoy V. A., Aliev A. D., Gerasimov V. K., Nikulova U. V., Stepanenko V. Yu., Khasbiullin R. R. Mechanism of Post-Radiation-Chemical Graft Polymerization of Styrene in Polyethylene // Polymers. 2021. Vol. 13. No. 15. p. 2512.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.3390/polym13152512
UR - https://doi.org/10.3390/polym13152512
TI - Mechanism of Post-Radiation-Chemical Graft Polymerization of Styrene in Polyethylene
T2 - Polymers
AU - Chalykh, Anatoly E
AU - Tverskoy, Vladimir A
AU - Aliev, Ali D
AU - Gerasimov, Vladimir K
AU - Nikulova, Uliana V
AU - Stepanenko, Valentina Yu
AU - Khasbiullin, Ramil R
PY - 2021
DA - 2021/07/30
PB - MDPI
SP - 2512
IS - 15
VL - 13
PMID - 34372115
SN - 2073-4360
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2021_Chalykh,
author = {Anatoly E Chalykh and Vladimir A Tverskoy and Ali D Aliev and Vladimir K Gerasimov and Uliana V Nikulova and Valentina Yu Stepanenko and Ramil R Khasbiullin},
title = {Mechanism of Post-Radiation-Chemical Graft Polymerization of Styrene in Polyethylene},
journal = {Polymers},
year = {2021},
volume = {13},
publisher = {MDPI},
month = {jul},
url = {https://doi.org/10.3390/polym13152512},
number = {15},
pages = {2512},
doi = {10.3390/polym13152512}
}
MLA
Cite this
MLA Copy
Chalykh, Anatoly E., et al. “Mechanism of Post-Radiation-Chemical Graft Polymerization of Styrene in Polyethylene.” Polymers, vol. 13, no. 15, Jul. 2021, p. 2512. https://doi.org/10.3390/polym13152512.