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采用安息香衍生自由基减小银纳米线直径以制备高透明低雾度透明导体

Synthesis of Silver Nanowires with Reduced Diameters Using Benzoin-Derived Radicals to Make Transparent Conductors with High Transparency and Low Haze.

机构信息

Department of Chemistry , University of California , Berkeley , California 94720 , United States.

California Research Alliance (CARA), BASF Corporation , Berkeley , California 94720 , United States.

出版信息

Nano Lett. 2018 Aug 8;18(8):5329-5334. doi: 10.1021/acs.nanolett.8b02479. Epub 2018 Jul 18.

Abstract

Reducing the diameter of silver nanowires has been proven to be an effective way to improve their optoelectronic performance by lessening light attenuation. The state-of-the-art silver nanowires are typically around 20 nm in diameter. Herein we report a modified polyol synthesis of silver nanowires with average diameters as thin as 13 nm and aspect ratios up to 3000. The success of this synthesis is based on the employment of benzoin-derived radicals in the polyol approach and does not require high-pressure conditions. The strong reducing power of radicals allows the reduction of silver precursors to occur at relatively low temperatures, wherein the lateral growth of silver nanowires is restrained because of efficient surface passivation. The optoelectronic performance of as-prepared 13 nm silver nanowires presents a sheet resistance of 28 Ω sq at a transmittance of 95% with a haze factor of ∼1.2%, comparable to that of commercial indium tin oxide (ITO).

摘要

通过减少银纳米线的直径,可以有效降低光衰减,从而提高其光电性能。目前最先进的银纳米线的直径通常约为 20nm。在此,我们报告了一种改进的多元醇法合成银纳米线的方法,其平均直径可低至 13nm,纵横比高达 3000。这种合成的成功基于在多元醇方法中使用安息香衍生的自由基,并且不需要高压条件。自由基的强还原能力允许在相对较低的温度下还原银前体,其中由于有效的表面钝化,银纳米线的横向生长受到抑制。所制备的 13nm 银纳米线的光电性能表现为在 95%透光率下的方阻为 28Ω/sq,雾度因子约为 1.2%,可与商业氧化铟锡(ITO)相媲美。

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