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Multidimensional Aligned Nanowires Array: Toward Bendable and Stretchable Strain Sensors

机译:多维对齐的纳米线阵列:朝向可弯曲和可拉伸的应变传感器

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Micropatterns based on the oriented nanowires have attracted research interests for their unique physicochemical advantages in various applications of electric microdevices. Here, we proposed a facile fibrous dewetting strategy by spreading and dewetting of the silver nanowire (AgNW) solution on the vertical aligned carbon nanotube array (ACNTs) for preparing multidimensional aligned nanowires array, based on the elastocapillary coalescence. The unidirectional shrinking of the liquid film on the top of ACNTs happens during the dewetting process, as a result of the elastocapillary coalescence of ACNTs, which drives the AgNWs aligned along normal direction of liquid film shrinkage on the top of ACNTs. Thus, a multidimensional aligned NWs array was prepared, composing of the horizontally oriented NWs of top layer and vertical ACNT bundles of under layer connected by CNT yarns. A bendable flexible electrode was prepared using the as-prepared multidimensional aligned nanowires array, showing high stability during bending cycles (1800 cycles). Moreover, the multidimensional aligned nanowires array is also applicable for fabricating strain sensors, which show stable resistance response under strain. We envision that the as-developed approach shed new light on easy manufacture NW-based micropatterns.
机译:基于面向纳米线的微图案吸引了在电动微生物的各种应用中具有独特的物理化学优势的研究兴趣。这里,我们通过基于弹性粒径聚结的垂直对准的碳纳米管阵列(AgNT)在垂直对准的碳纳米管阵列(ACNT)上的银纳米线(AgNW)溶液的脱模来提出容纳纤维脱模策略。在脱水过程中,由于痤疮的弹性致胶质化聚结会,液体膜对丙烯顶部的单向收缩发生,这使得沿着丙烯顶部的液体膜收缩的正常方向对齐的Agnw。因此,制备了多维对准的NWS阵列,由CNT纱线连接的顶层的水平取向的顶层NW和垂直acnt束的结构组成。使用AS制备的多维对准的纳米线阵列制备可弯曲的柔性电极,显示在弯曲循环期间的高稳定性(1800次循环)。此外,多维对准的纳米线阵列也适用于制造应变传感器,其显示出稳定的耐菌株的阻力响应。我们设想了易于制造基于NW的MicroPatterns的新灯。

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