自愈水凝胶
葡聚糖
化学
乙二醇
拉伤
化学工程
材料科学
高分子化学
生物化学
有机化学
解剖
生物
工程类
作者
Yusuke Matsumoto,Yukiko Enomoto-Rogers,Satoshi Kimura,Tadahisa Iwata
标识
DOI:10.1016/j.carbpol.2020.116794
摘要
We prepared self-standing chemically cross-linked hydrogels from 1,3-α-d-glucan (Mw = 2.0 × 105) and 1,3-β-d-glucans (low-molecular-weight (LMW): Mw = 2.0 × 105, high-molecular-weight (HMW): Mw = 1.0 × 106), using ethylene glycol diglycidyl ether (EGDGE) as a cross-linker. Uniaxial compressive tests using cylindrical hydrogels of the cross-linked glucans were conducted. Both the 1,3-α-d-glucan and LMW-1,3-β-d-glucan hydrogels were highly deformable and shape-deformable; they could be compressed without breaking to 60% and 80% strain, respectively, and recovered 80% of their original height. The Young’s moduli of the 1,3-α-d-glucan and LMW-1,3-β-d-glucan hydrogels indicated that the 1,3-α-d-glucan hydrogels were harder than the 1,3-β-d-glucan hydrogels. The HMW-1,3-β-d-glucan hydrogels were more deformable and had better shape recovery than the LMW-1,3-β-d-glucans; they could be compressed by up to 90% maximum strain, and recovered almost 100% of their original height from 80% strain. Cyclic compression tests were performed to study their network structure.
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