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Bioinspired ultra-stretchable and anti-freezing conductive hydrogel fibers with ordered and reversible polymer chain alignment

机译:具有生物启发性的超拉伸和抗冻导电水凝胶纤维聚合物链排列有序且可逆

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摘要

High-performance stretchable conductive fibers are desired for the development of stretchable electronic devices. Here we show a simple spinning method to prepare conductive hydrogel fibers with ordered polymer chain alignment that mimics the hierarchically organized structure of spider silk. The as-prepared sodium polyacrylate hydrogel fiber is further coated with a thin layer of polymethyl acrylate to form a core–shell water-resistant MAPAH fiber. Owing to the coexistence and reversible transformation of crystalline and amorphous domains in the fibers, MAPAH fibers exhibit high tensile strength, large stretchability and fast resilience from large strain. MAPAH fiber can serve as a highly stretchable wire with a conductive hydrogel core and an insulating cover. The stretchability and conductivity of the MAPAH fiber are retained at −35 °C, indicating its anti-freezing property. As a prime example of stretchable conductive fibers, MAPAH fibers will shed light on the design of next generation textile-based stretchable electronic devices.
机译:高性能可拉伸导电纤维是可拉伸电子设备的开发所需要的。在这里,我们展示了一种简单的纺丝方法,以制备具有序的聚合物链排列的导电水凝胶纤维,该纤维模仿蜘蛛丝的层次结构。所制备的聚丙烯酸钠水凝胶纤维进一步涂有一层薄的聚丙烯酸甲酯,形成了核壳防水MAPAH纤维。由于纤维中晶域和非晶域的共存和可逆转变,MAPAH纤维显示出高拉伸强度,大拉伸性和大应变下的快速回弹力。 MAPAH纤维可以用作具有导电水凝胶芯和绝缘覆盖层的高拉伸性电线。 MAPAH纤维的拉伸性和导电性保持在-35 C,表明其抗冻性。作为可拉伸导电纤维的主要示例,MAPAH纤维将为下一代基于纺织品的可拉伸电子设备的设计提供启发。

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