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Strain-invariant conductance in an elastomeric nanocomposite mesh conductor for stretchable electronics

机译:弹性纳米复合材料网导体中的应变不变电导,用于拉伸电子器件

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摘要

An intrinsically stretchable conductor with a natural deformability is a fundamental building component for stretchable and wearable electronics. The large variations of conductance upon mechanical deformations often lead to electronic instability at the system level. Here, an elastomeric nanocomposite mesh conductor is introduced, which exhibits a series of desirable properties including strain-invariant conductance, mechanical compliance, and excellent breathability. Selective laser ablation enables the facile procedure to create the mesh from a silver nanowire/thermoplastic polyurethane nanocomposite. The hollow mesh design effectively accommodates the strains to achieve stable conductance during tensile deformations. Demonstrations of wearable heaters and electromyogram sensors show the practical suitability of the nanocomposite mesh conductor for uses in epidermal electronic devices. The structural design and engineering strategy reported in this study represent a generic approach for the deterministic and versatile manipulation of intrinsically stretchable conductors.
机译:具有天然变形性的本质上拉伸导体是可伸展和可穿戴电子设备的基本建筑部件。机械变形时的电导变化通常导致系统级别的电子不稳定。这里,引入弹性体纳米复合材料网导体,其表现出一系列理想的性质,包括应变不变的电导,机械顺应性和优异的透气性。选择性激光烧蚀使得可容纳过程从银纳米线/热塑性聚氨酯纳米复合材料中形成网状物。中空网格设计有效地容纳菌株以在拉伸变形期间实现稳定的电导。可穿戴加热器和肌电图传感器的示范显示了纳米复合材料网元件用于表皮电子器件中使用的实用性。本研究报告的结构设计和工程战略代表了本质上拉伸导体的确定性和多功能操纵的通用方法。

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