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Anisotropic conductive, tough and stretchable heater based on nacre-like crumpled graphene composite

机译:基于珍珠液皱皱的石墨烯复合材料的各向异性导电,坚韧和可拉伸的加热器

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摘要

y In this work, the nacre-like styrene-butadiene rubber/crumpled graphene nanosheets heater (NSGH) with integrated superior performance, including excellent anisotropic conductivity (safety), flexible stretchable Joule heating performance and comprehensive mechanical performance, is prepared on a large-scale by the bladecoating technique. The excellent flexible stretchable Joule heating performance, almost constant of the saturation temperature (163 degrees C) at the excitation of 8 V suffering 70% strain and 4000 times of bending, is originated from the selection of elastic styrene-butadiene rubber matrix and introduction of flexible conductive crumpled graphene nanosheets. The excellent comprehensive mechanical performance (increment of 215.7% on toughness and 531.85% on initial tensile modulus) and the ultrahigh anisotropic conductivity are attributed to the distinctive nacre-like structure. Moreover, the heating model of the NSGH is proposed and validated, that the heating performance can be tailored and forecasted.
机译:y在这项工作中,丁香丁二烯橡胶/弄皱的石墨烯纳米蛋白酶加热器(NSGH)具有集成的优越性,包括优异的各向异性电导率(安全),柔性可拉伸焦耳加热性能和综合机械性能,是大型的 - 通过BladeCoating技术缩放。优异的柔性拉伸焦耳加热性能,饱和温度(163摄氏度)的饱和温度(163摄氏度)源于70%菌株和4000次弯曲的激发,起源于弹性苯乙烯 - 丁二烯橡胶基质的选择和引入柔性导电皱纹石墨烯纳米液。优异的综合机械性能(韧性上的增量215.7%,初始拉伸模量的531.85%)和超高各向异性电导率归因于独特的珍珠虫状结构。此外,提出和验证了NSGH的加热模型,可以量身定制和预测加热性能。

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