聚乙烯醇
自愈水凝胶
极限抗拉强度
琼脂糖
材料科学
水溶液
化学工程
乙烯醇
复合材料
复合数
硫酸铵
琼脂
聚合物
高分子化学
色谱法
化学
有机化学
生物
细菌
工程类
冶金
遗传学
作者
Xinxin Sun,Yufei Zhao,Hui Li,Chunhui Luo,Faliang Luo
摘要
Abstract A polyvinyl alcohol (PVA)‐agarose (agar) composite hydrogel (M‐PVA‐agar‐60) was developed by simple three cycles of freeze‐thawing, followed by successively soaking in ammonium sulfate aqueous solution to induce phase separation and dialyzing against deionized water to remove residual sulfate salts. Due to the synergy of crystalline regions, hydrogen bonding and phase separation domains, the obtained M‐PVA‐agar‐60 hydrogel exhibits excellent mechanical properties (tensile strength = 1.1 MPa, tensile strain = 324% and compressive stress = 12.5 MPa), combined with a high water content of 87.0%. Moreover, the hydrogel hardly expands after immersing in the phosphate‐buffered saline aqueous solution at 37°C for a week, and the tensile stress and toughness remain almost the same as their initial values, superior to most reported non‐swellable hydrogels. Because of the biocompatible starting materials, absence of toxic chemicals, and dialysis in advance to remove ammonium sulfate, the hydrogel also shows excellent cell compatibility, making it an ideal candidate for tissue engineering materials.
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