自愈水凝胶
材料科学
聚合物
两亲性
软机器人
纳米技术
肿胀 的
高分子科学
高分子化学
复合材料
共聚物
执行机构
计算机科学
人工智能
作者
Xunan Hou,Bangrui Huang,Zhou Li-li,Siqi Liu,Junhua Kong,Chaobin He
标识
DOI:10.1002/adma.202301532
摘要
Abstract Hydrogels find important roles in biomedicine, wearable electronics, and soft robotics, but their mechanical properties are often unsatisfactory. Conventional tough hydrogel designs are based on hydrophilic networks with sacrificial bonds, while the incorporation of hydrophobic polymers into hydrogels is less well understood. In this work, a hydrogel toughening strategy is demonstrated by introducing a hydrophobic polymer as reinforcement. Semicrystalline hydrophobic polymer chains are “woven” into a hydrophilic network via entropy‐driven miscibility. In‐situ‐formed sub‐micrometer crystallites stiffen the network, while entanglements between hydrophobic polymer and hydrophilic network enable large deformation before failure. The hydrogels are stiff, tough, and durable at high swelling ratios of 6–10, and the mechanical properties are tunable. Moreover, they can effectively encapsulate both hydrophobic and hydrophilic molecules.
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