首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Designing highly conductive and stable silver nanocrystal thin films with tunable work functions through solution-based surface engineering with gold coating process
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Designing highly conductive and stable silver nanocrystal thin films with tunable work functions through solution-based surface engineering with gold coating process

机译:通过基于溶液的表面工程与金涂工艺设计高导电和稳定的银纳米晶薄膜,通过基于溶液的表面工程

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We fabricated highly conductive and stable silver nanocrystal (Ag NC) thin film electrodes with tunable work functions using an all-solution-based method involving sequential ligand exchange and gold (Au) coating processes. We studied the effect of the Au coating process on the ligand-exchanged Ag NC thin films and successfully demonstrated the formation of a thin Au layer on the surface of the Ag NCs. We investigated the morphological, structural, optical, chemical, and electrical properties of the Ag NC thin films before and after Au coating. The work function of the electrodes was precisely controlled by varying the treatment time and concentration of gold chloride trihydrate (HAuCl4 center dot 3H(2)O) solutions. The thermal stability of the Au coated Ag NC thin films in air was greatly enhanced, and an extremely low resistivity of 3.4 mu Omega cm was achieved. Taking advantage of this solution-based low-temperature process and using a minimal amount of Au for cost reduction, we fabricated all-NC-based high-performance flexible photodetectors. (C) 2016 Elsevier B.V. All rights reserved.
机译:我们使用涉及顺序配体交换和金(AU)涂覆方法的全溶液的方法制造具有可调谐工作功能的高导电和稳定的银纳米晶(Ag NC)薄膜电极。我们研究了Au涂布方法对配体交换的Ag NC薄膜的影响,并成功地证明了在Ag NC的表面上形成薄的Au层。我们在Au涂层之前和之后调查了Ag NC薄膜的形态学,结构,光学,化学和电性能。通过改变金氯化物三水合物(HauCl4中心点3h(2)O)溶液的处理时间和浓度来精确控制电极的功函数。在空气中的Au涂层Ag NC薄膜的热稳定性大大提高,实现了3.4μmomegacm的极低电阻率。利用基于解决方案的低温工艺并使用最小量的AU进行成本降低,我们制造了基于全NC的高性能柔性光电探测器。 (c)2016 Elsevier B.v.保留所有权利。

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