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Scalable Solution-Processed Fabrication Approach for High-Performance Silver Nanowire/MXene Hybrid Transparent Conductive Films

机译:用于高性能银纳米线/蒙膜杂交透明导电膜的可扩展溶液加工制造方法

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摘要

The transparent conductive films (TCFs) based on silver nanowires are expected to be a next-generation electrode for flexible electronics. However, their defects such as easy oxidation and high junction resistance limit its wide application in practical situations. Herein, a method of coating Ti3C2Tx with different sizes was proposed to prepare silver nanowire/MXene composite films. The solution-processed silver nanowire (AgNW) networks were patched and welded by capillary force effect through the double-coatings of small and large MXene nanosheets. The sheet resistance of the optimized AgNW/MXene TCFs was 15.1 Ω/sq, the optical transmittance at 550 nm was 89.3%, and the figure of merit value was 214.4. Moreover, the AgNW/MXene TCF showed higher stability at 1600 mechanical bending, annealing at 100 °C for 50 h, and exposure to ambient air for 40 days. These results indicate that the novel AgNW/MXene TCFs have a great potential for high-performance flexible optoelectronic devices.
机译:基于银纳米线的透明导电膜(TCF)预计是柔性电子器件的下一代电极。然而,它们的缺陷如易于氧化和高结阻力的缺陷在实际情况下限制了其广泛的应用。在此,提出了一种用不同尺寸涂覆Ti3C2Tx的方法以制备银纳米线/蒙胶复合膜。通过小型和大MxENENOOPES的双涂层通过毛细管力效应擦拭和焊接溶液加工的银纳米线(AGNW)网络。优化的AgNw / mxene TCFS的薄层电阻为15.1Ω/ sq,550nm处的光学透射率为89.3%,优异值图为214.4。此外,AgNw / mxeneTCF在1600机械弯曲时显示出更高的稳定性,在100℃下退火50小时,并暴露于环境空气40天。这些结果表明,新型AGNW / MXENE TCFS对高性能柔性光电器件具有很大的潜力。

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