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选择性机械转移沉积法制备用于高性能银纳米线混合电极的 Langmuir 石墨烯薄膜。

Selective Mechanical Transfer Deposition of Langmuir Graphene Films for High-Performance Silver Nanowire Hybrid Electrodes.

机构信息

University of Sussex , Falmer, Brighton BN1 9RH, United Kingdom.

Taif University , Taif 26571, Saudi Arabia.

出版信息

Langmuir. 2017 Oct 31;33(43):12038-12045. doi: 10.1021/acs.langmuir.7b02799. Epub 2017 Oct 13.

Abstract

In this work, we present silver nanowire hybrid electrodes prepared through the addition of small quantities of pristine graphene by mechanical transfer deposition from surface-assembled Langmuir films. This technique is a fast, efficient, and facile method for modifying the optoelectronic performance of AgNW films. We demonstrate that it is possible to use this technique to perform two-step device production by selective patterning of the stamp used, leading to controlled variation in the local sheet resistance across a device. This is particularly attractive for producing extremely low cost sensors on arbitrarily large scales. Our aim is to address some of the concerns surrounding the use of AgNW films as replacements for indium tin oxide (ITO), namely, the use of scarce materials and poor stability of AgNWs against flexural and environmental degradation.

摘要

在这项工作中,我们通过从表面组装的 Langmuir 膜机械转移沉积添加少量原始石墨烯来制备银纳米线混合电极。这种技术是一种快速、高效、简便的方法,可以修饰 AgNW 薄膜的光电性能。我们证明,通过选择性地对使用的印章进行图案化,可以使用这种技术进行两步法器件制造,从而在整个器件中控制局部电阻的变化。这对于在任意大的尺度上生产极其低成本的传感器非常有吸引力。我们的目标是解决使用银纳米线薄膜代替氧化铟锡(ITO)所带来的一些问题,即稀缺材料的使用和银纳米线对弯曲和环境降解的稳定性差。

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