明胶
自愈水凝胶
弹性体
韧性
乙二醇
软机器人
纳米技术
聚合物
离子键合
复合材料
材料科学
生物医学工程
计算机科学
化学工程
工程类
执行机构
高分子化学
化学
离子
医学
人工智能
生物化学
有机化学
作者
Shuxiang Liu,Yuping Chen,Jinkui Feng,Junjie Peng,Yaping Zhou,Yang Zhao,Yongpeng Zhao,Zhiwei Lü,Mengmeng Sun,Wu Chun,Haipeng Hu,Hanbing Rao,Tao Zhou,Gehong Su
标识
DOI:10.1016/j.cej.2023.143087
摘要
To date, hydrogels with skin-like ionic conduction mechanisms are gaining popularity in fabricating soft electronics. Integrating the tissue-like mechanical properties and multi-functionalities into one hydrogel system is crucial for its practical application in diverse scenarios. Nevertheless, it remains a significant challenge to realize. Here, we present a mechanically soft tissue-like organohydrogel with ionic conduction mechanism and multiple functions via constructing plentiful “sacrificial bonds” (hydrogen bonding) between the hydrophobic association poly(acrylamide)/gelatin (HAPAM/gelatin) hydrogel and ethylene glycol/water (EG/H2O) clusters. By systematically optimizing the compositions, the organohydrogel displayed desired mechanical properties that fully matched human soft tissues, including the unique soft (∼77.8 kPa in Young’s modulus) yet tough (3.07 MJ m−3 in toughness) features. Meanwhile, the gel is tear-resistant (∼3.15 kJ m−2 in fracture energy), strong (∼0.4 MPa in tensile and ∼4.1 MPa in compression), and ultra-stretchable (∼1324 %). In addition, the organohydrogel integrated a broad spectrum of functionalities, including optically transparent, self-healing, freezing/heating tolerant, adhesive, and deformation sensitive. By taking these advantages, applications in soft ionotronic sensors for healthcare monitoring and information encryption/decryption were presented using the organohydrogel. It is expected that this work will shed some light on developing artificial materials with mechanical features resembling soft tissues and sophisticated functionalities.
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