材料科学
自愈水凝胶
肿胀 的
生物相容性
乙烯醇
聚合物
化学工程
复合材料
超细纤维
高分子化学
工程类
冶金
作者
Dong‐Hee Kang,Sungrok Wang,MeeiChyn Goh,Jae-Il Park,Hyeonjun Na,Won‐June Lee,Young Mo Kim,Md. Saifur Rahman,Giyoong Tae,Myung‐Han Yoon
标识
DOI:10.1021/acsami.3c11999
摘要
This research presents a simple but general method to prepare water-soluble-polymer-based superabsorbent hydrogels with predefined microscale geometries and controlled swelling properties. Unlike conventional hydrogel preparation methods based on bulk solution-phase cross-linking, poly(vinyl alcohol) is homogeneously mixed with polymer-based cross-linkers in the solution phase and thermally cross-linked in the solid phase after drying; the degree of cross-linking is modulated by controlling the cross-linker concentration, pH, and/or thermal annealing conditions. After the shape definition process, cross-linked films or electrospun nanofibers are treated with sulfuric acid to weaken hydrogen bonds and introduce sulfate functionality in polymer crystallites. The resultant superabsorbent hydrogels exhibit an isotropic expansion of the predefined geometry and tunable swelling properties. Particularly, hydrogel microfibers exhibit excellent optical transparency, good biocompatibility, large porosity, and controlled cell adhesion, leading to versatile 3D cell culture scaffolds that not only support immortalized cell lines and primary neurons but also enable stiffness-modulated cell adhesion studies.
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