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首页> 外文期刊>ACS nano >Dopamine-Triggered Hydrogels with High Transparency, Self-Adhesion, and Thermoresponse as Skinlike Sensors
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Dopamine-Triggered Hydrogels with High Transparency, Self-Adhesion, and Thermoresponse as Skinlike Sensors

机译:多巴胺触发的水凝胶具有高透明度,自粘和热响应,如皮肤的传感器

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摘要

Mussel-inspired conductive hydrogels are attracfive for the development of next-generation self-adhesive, flexible skinlike sensors. However, despite extensive progress, there are still some daunting challenges that hinder their applications, such as inferior optical transparency, low catechol content (e.g., poor adhesion), as well as limited sensation performances. Here, we report a dopamine-triggered gelation (DTG) strategy for fabricating mussel-inspired, transparent, and conductive hydrogels. The DTG design leverages on the dual functions of dopamine, which serves as both polymerization initiator and dynamic mediator to elaborate and orchestrate the cross-linking networks of hydrogels, allowing for pronounced adhesion, robust elasticity, self-healing ability, excellent injectability and three-dimensional printability, reversible and tunable transparent-opaque transition, and thermoresponsive feature. These preferable performances enable DTG hydrogels as self-adhesive, flexible skinlike sensors for achieving multiple sensations toward pressure, strain, and temperature, even an extraordinary visual perception effect, making it a step closer in the exploration of future biomimetic skin.
机译:贻贝启发的导电水凝胶是开发下一代自粘、柔性皮肤传感器的理想材料。然而,尽管取得了广泛的进展,但仍存在一些阻碍其应用的严峻挑战,如光学透明度差、儿茶酚含量低(例如粘附性差),以及感官性能有限。在这里,我们报告了一种多巴胺触发凝胶(DTG)策略,用于制造贻贝启发的透明导电水凝胶。DTG的设计利用了多巴胺的双重功能,它既是聚合引发剂又是动态介体,以精心设计和协调水凝胶的交联网络,实现显著的粘附性、强健的弹性、自愈合能力、优异的注射性和三维印刷适性、可逆和可调的透明-不透明转变,和热响应特性。这些更好的性能使DTG水凝胶能够作为自粘、灵活的皮肤状传感器,实现对压力、应变和温度的多种感觉,甚至是非凡的视觉感知效果,使其在探索未来仿生皮肤方面更进一步。

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