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Failure criterion of silver nanowire electrodes on a polymer substrate for highly flexible devices

机译:高柔性器件在聚合物基板上的银纳米线电极的失效准则

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摘要

Nanomechanical characteristics of standalone silver nanowires (Ag NWs) are a key issue for providing a failure criterion of advanced flexible electrodes that are trending towards smaller radius of curvatures (ROCs). Through in-situ tensile and buckling tests of pentagonal Ag NWs, we demonstrated that the intrinsic fracture strain provides a significant criterion to predict the mechanical and electrical failure of Ag NW electrodes under various strain modes, because the decrease in fracture strain limits figure of merit of flexible devices. The Ag NW electrodes on a polymer substrate exhibited a strain-dependent electrical failure owing to the unique deformation characteristics with a size-dependent brittle-to-ductile transition of the five-fold twinned Ag NWs. All the Ag NWs greater than approximately 40 nm in diameter exhibited brittle fracture with a size-independent stress-strain response under tensile and buckling modes, which leads to the electrical failure of flexible electrodes at the almost same threshold ROC. Meanwhile, the higher ductility of Ag NWs less than 40 nm in diameter resulted in much smaller threshold ROCs of the electrodes due to the highly extended fracture strains, which can afford a high degree of freedom for highly flexible devices.
机译:独立的银纳米线(Ag NW)的纳米力学特性是提供高级挠性电极的失效准则的关键问题,而该挠性电极趋向于向较小的曲率半径(ROC)发展。通过对五角形Ag NW的原位拉伸和屈曲测试,我们证明了固有断裂应变为预测Ag NW电极在各种应变模式下的机械和电气故障提供了重要的标准,因为断裂应变的降低限制了品质因数柔性设备。聚合物基材上的Ag NW电极由于具有独特的变形特性而表现出与应变有关的电故障,该变形特征是五重孪晶Ag NW的尺寸随脆性到延性转变的。在拉伸和屈曲模式下,所有直径大于约40 nm的Ag NW都表现出脆性断裂,并具有与尺寸无关的应力应变响应,这导致在几乎相同的阈值ROC下,柔性电极发生电故障。同时,直径小于40 nm的Ag NW的较高的延展性导致电极的阈值ROC由于高度扩展的断裂应变而大大减小,这可以为高度柔性的设备提供高度的自由度。

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