A multifunctional hydrogel fabricated via ultra-fast polymerization by graphene oxide-adsorbed liquid metal nanodroplets

石墨烯 聚合 材料科学 金属 氧化物 化学工程 吸附 聚合物 纳米技术 高分子化学 复合材料 化学 有机化学 工程类 冶金
作者
Yaotian Su,J. W. Zhao,Wenwei Zhan,Haocheng Yuan,Lingyun Wu,Gang Sui,Hongtao Zhang
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:435: 135018-135018 被引量:60
标识
DOI:10.1016/j.cej.2022.135018
摘要

Graphene structures have never been found to play a role in accelerating fabrication of functional hydrogels. In this work, it is initially discovered that multifunctional hydrogels are fabricated via ultra-fast polymerization (∼minutes) by graphene oxide-adsorbed liquid metal nanodroplets ([email protected]) vs. by conventional approaches (∼hours/days). [email protected] are used to rapidly initiate and further cross-link polyacrylic acid (PAA) chains into a three-dimensional (3D) network without any extra molecular initiators, cross-linkers, heat source, and/or protective gas. The polymerization process with [email protected] is extremely faster than that without GO involved (20 s vs. 4 h of prepolymer formation, and then 10 min vs. 3 days of crosslinking) for free radical polymerization of PAA hydrogels. The resulting hydrogel with 2 wt% reduced graphene oxide (rGO) exhibits 600% increase in tensile strength and 950% enhancement in conductivity, as well as excellent self-healing capabilities, in comparison with that of the pure PAA. The sensitivity studies show its great potential for the application of flexible sensors. Furthermore, the hydrogel possesses good dissolving properties, which is greatly beneficial for recyclability of the LM. This creative study not only broadens a novel application of graphene for making advanced multifunctional polymer materials, but also provides a brand-new route to realization of ultra-fast manufacturing technology that is significantly promising for industrial production in wearable devices.
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