School of Advanced Materials Science and Engineering, Sungkyunkwan University (SKKU), Suwon 16419, Korea.
Nanoscale. 2017 Jul 6;9(26):8938-8944. doi: 10.1039/c7nr02615c.
Silver (Ag) nanowires (NWs) are promising building blocks for the fabrication of stretchable electrodes, but they may undergo mechanical fracture at low tensile strains, which leads to degradation in electrical performance of Ag NW-based stretchable electrodes. Here we report on a simple route to create the percolation networks of Ag NW rings via a conventional spray coating process. We discovered that Ag NWs can be bent into curved shapes within micrometer-sized liquid droplets generated during the spraying process due to elasto-capillary interaction. This curving phenomenon allowed the deposition of Ag NW rings directly on a desired substrate without the need for any complicated process. The network of Ag NW rings effectively releases the applied tensile strains thanks to curved shapes of the constituent NWs, enabling the achievement of excellent electromechanical stability as well as high stretchability. Our approach not only provides a simple, low cost, and scalable route to the fabrication of high-performance Ag NW-based stretchable electrodes, but also opens a new and useful way of engineering the structure of NWs for various applications.
银(Ag)纳米线(NWs)是制造可拉伸电极的有前途的构建块,但它们可能会在低拉伸应变下发生机械断裂,这会导致基于 Ag NW 的可拉伸电极的电性能下降。在这里,我们报告了一种通过传统喷涂工艺创建 Ag NW 环渗流网络的简单途径。我们发现,由于弹毛细管相互作用,Ag NW 可以在喷涂过程中产生的微米级液滴内弯曲成曲线形状。这种弯曲现象允许 Ag NW 环直接沉积在所需的基底上,而无需任何复杂的工艺。由于组成 NW 的弯曲形状,NW 环的网络有效地释放了所施加的拉伸应变,从而实现了优异的机电稳定性和高拉伸性。我们的方法不仅为制造高性能 Ag NW 基可拉伸电极提供了一种简单、低成本和可扩展的途径,而且为各种应用的 NW 结构工程开辟了一条新的有用途径。