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Multiple Shape Memory, Self-Healable, and Supertough PAA-GO-Fe3+ Hydrogel

机译:多个形状记忆,Self-Healable,Supertough PAA-GO-Fe3 + Hydrogel

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摘要

A multiple shape memory and self-healing poly(acrylic acid)-graphene oxide-Fe3+ (PAA-GOFe(3+)) hydrogel with supertough strength is synthesized containing dual physically crosslinked PAA network by GO and Fe3+. The first GO cross-linked hydrogel can be reversibly reinforced by immersing in FeCl3/HCl and pure water and softened by immersing in HCl. The tensile strength is 2.5 MPa with the break strain of 700%. Multiple shape memory capability is found depending on this unique feature, the hydrogel can be fixed in four temporary shapes by adjusting the immersing time in FeCl3/HCl and pure water, and recovered in sequence by immersing in HCl. This hydrogel also exhibits perfect self-healing behavior, the cut as-prepared hydrogel is almost completely healed by immersing in FeCl3/HCl. Besides, the hydrogel shows enhanced electrical conductivity with the presence of GO and Fe3+. This supertough hydrogel provides a new way to design soft actuators.
机译:多个形状记忆和自愈聚(丙烯酸)石墨烯oxide-Fe3 +(PAA-GOFe(3 +))水凝胶supertough力量合成含有双重身体吗交联PAA去Fe3 +网络。去可以可逆交联水凝胶强化了沉浸在FeCl3 /盐酸和纯洁水和盐酸浸泡软化的。抗拉强度为2.5 MPa的破坏应变的700%。根据这个独特的特性,发现水凝胶可以在四个临时固定形状调整在FeCl3 /盐酸和浸泡时间纯净的水,在序列中恢复过来沉浸在盐酸。完美的自愈合行为,减少好水凝胶是几乎完全愈合沉浸在FeCl3 /盐酸。显示增强导电性去和Fe3 +。提供了一个柔软的致动器设计的新方法。

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