首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Electromechanical coupling of isotropic fibrous networks with tailored auxetic behavior induced by water-printing under tension
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Electromechanical coupling of isotropic fibrous networks with tailored auxetic behavior induced by water-printing under tension

机译:各向同性纤维网络与张力下水印诱导的各向同性纤维网的机电耦合

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Understanding the electromechanical coupling of auxetic materials offers unique opportunities to enhance the sensitivity of piezoresistive sensors. Reports on the auxetic behavior of random fiber networks have been relatively scarce due to their less pronounced Poisson's expansions than other auxetic designs adapting periodically arranged structures. In this study, the auxetic response of hierarchical pulp-carbon nanotube networks is tailored through the localized tensional micro-fracture initiated by water-printing. The interfacial junctions among multiwalled carbon nanotubes (MWCNTs) and cellulose fibers are disintegrated and reorganized to induce the buckling of a wet CNT paper composite (CPC) network. The Poisson's ratio of -49.5 is achieved at the water-printed region. The resulting piezoresistive properties of CPC sensors exhibit high sensitivity (3.3 kPa(-1)) over a wide dynamic range (6-500 000 Pa). The novel auxetic behavior of water-printed CPC paves the way for high performance and inexpensive wearable devices.
机译:了解auxetic材料的机电耦合为提高压阻传感器的灵敏度提供了独特的机会。由于随机光纤网络的泊松展开比其他采用周期性排列结构的auxetic设计不太明显,因此关于其auxetic行为的报告相对较少。在这项研究中,通过水印引发的局部拉伸微断裂来定制分级纸浆碳纳米管网络的auxetic响应。多壁碳纳米管(MWCNT)和纤维素纤维之间的界面连接被分解和重组,以诱导湿碳纳米管-纸复合材料(CPC)网络的屈曲。在水印区域,泊松比达到-49.5。CPC传感器的压阻特性在宽动态范围(6-500 000 Pa)内表现出高灵敏度(3.3 kPa(-1))。水性印刷CPC的新颖auxetic行为为高性能和廉价的可穿戴设备铺平了道路。

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