首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Metal nanowire percolation micro-grids embedded in elastomers for stretchable and transparent conductors
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Metal nanowire percolation micro-grids embedded in elastomers for stretchable and transparent conductors

机译:嵌入弹性体中的金属纳米线渗滤微网格,用于可拉伸和透明导体

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摘要

Next-generation stretchable optoelectronics require functional electric conductors with mechanical stretchability and optical transparency. We present a new class of highly stretchable and transparent conductors based on silver nanowire (AgNW) percolation micro-grids embedded in an elastomeric substrate. These are prepared by simple spray-coating and subsequent adhesive-tape-assisted contact-removal of AgNWs. The synergistic combination of the percolated NWs and regular micro-grid geometry in an integrated form makes it possible to achieve uniform, reproducible, and predictable performance of the resulting AgNW micro-grids and ensure good stretchability. The fabricated device shows superior optoelectronic performance with a sheet resistance of 26.1 Omega sq(-1) and an optical transmittance of 85.8%. In addition, the device can reversibly accommodate various mechanical deformations, such as stretching, bending, and twisting.
机译:下一代可拉伸光电器件需要具有机械可拉伸性和光学透明性的功能性电导体。我们基于嵌入弹性体基底中的银纳米线(AgNW)渗滤微网格,提出了一种新型的高拉伸性和透明导体。这些是通过简单的喷涂和随后的胶粘带辅助接触去除AgNW制备的。渗透的净水和规则的微网格几何形状以集成形式的协同组合,可以实现所得AgNW微网格的均匀,可再现和可预测的性能,并确保良好的拉伸性。制成的器件显示出卓越的光电性能,其薄层电阻为26.1 Omega sq(-1),光透射率为85.8%。另外,该装置可以可逆地适应各种机械变形,例如拉伸,弯曲和扭曲。

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