深共晶溶剂
伤口愈合
胶粘剂
自愈
溶剂
共晶体系
材料科学
导电的
化学
高分子化学
生物医学工程
纳米技术
复合材料
有机化学
外科
医学
替代医学
合金
图层(电子)
病理
作者
Shaghayegh Vakili,Zahra Mohamadnia,Ebrahim Ahmadi
标识
DOI:10.1021/acs.biomac.4c00960
摘要
Flexible electronic devices such as wearable sensors are essential to advance human-machine interactions. Conductive eutectogels are promising for wearable sensors, despite their challenges in self-healing and adhesion properties. This study introduces a multifunctional eutectogel based on a novel polymerizable deep eutectic solvent (PDES) prepared by the incorporation of diallyldimethylammonium chloride (DADMAC) and glycerol in the presence of polycyclodextrin (PCD)/dopamine-grafted gelatin (Gel-DOP)/oxidized sodium alginate (OSA). The synthesized eutectogel has reversible Schiff-base bonds, hydrogen bonds, and host-guest interactions, which enable rapid self-healing upon network disruption. GPDO-15 eutectogel has significant tissue adhesion, high stretchability (419%), good ionic conductivity (0.79 mS·cm
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