4.6 Article

Modulation of spatial and topological inhomogeneities of linear polymer hydrogel

期刊

MATERIALS TODAY COMMUNICATIONS
卷 31, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.mtcomm.2022.103700

关键词

Linear polymer hydrogel; Network; Inhomogeneity

资金

  1. National Natural Sci-ence Foundation of China [11972160]
  2. Guangdong Basic and Applied Basic Research Foundation [2019A1515011900]
  3. Science and Technol-ogy Program of Guangzhou, China [202002030367]

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This study investigated the influence of polymer volume fraction and amount of crosslinker on the inhomogeneities of linear polymer hydrogel, revealing the generation and variation mechanisms through molecular dynamics simulation. The results showed that an increase in polymer volume fraction and a decrease in amount of crosslinker can increase the spatial inhomogeneity of the hydrogel.
It is well known that physical properties such as optical transparency, mechanical strength and permeability of hydrogel are strongly related to inhomogeneities of hydrogel. The physical properties of hydrogel, including inhomogeneity, are affected by the polymer volume fraction and amount of crosslinker at the state of hydrogel preparation typically. To study the influence of polymer volume fraction and amount of crosslinker on the in homogeneities of linear polymer hydrogel, molecular dynamics simulation is performed to reproduce gelation process and quantified inhomogeneities of the obtained hydrogel network. Furthermore, the generation and variation mechanisms of inhomogeneities in linear polymer hydrogel are revealed through investigation of crosslink pattern and formation and collapse of cluster. The results indicate that increase of the polymer volume fraction and decrease of amount of crosslinker can increase the spatial inhomogeneity of the hydrogel. The topological inhomogeneity increases almost monotonically with polymer volume fraction, but first increases and then decreases with the increase of the amount of crosslinker. It is concluded that inhomogeneities of linear polymer hydrogel can be flexibly modulated by polymer volume fraction and amount of crosslinker.

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