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Enhanced solar hydrogen generation of high density, high aspect ratio, coaxial InGaN/GaN multi-quantum well nanowires

机译:高密度,高纵横比,同轴InGaN / GaN多量子阱纳米线的增强太阳能氢生成

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摘要

In an attempt to partially mimic the natural photosynthesis, a process that converts sunlight into chemical fuel, a novel InGaN/GaN multi-quantum well (MQW) nanowire heterostructures photoanode with superior surface-to-volume ratio was designed. The light harvesting medium in this nanoscale architecture is a thick MQW composed of six periods of epitaxial InGaN/GaN shells deposited coaxially on the semipolar sidewall facets of a thin GaN core nanowire. High aspect ratio and wide photoresponse extended to the visible spectrum were demonstrated from the detailed characterizations of the as-grown nanowires. The result revealed that this nanoscale photoanode can convert up to 8.6% of the illuminating light into photocurrent that can be utilized for the facile generation of hydrogen fuel with a 0.21% solar-to-hydrogen conversion efficiency, which is comparable to that of the natural photosynthesis. (C) 2014 Elsevier Ltd. All rights reserved.
机译:为了部分模拟自然光合作用,设计了一种将阳光转化为化学燃料的过程,设计了一种新型InGaN / GaN多量子阱(MQW)纳米线异质结构光阳极,该阳极具有较高的体积比。在这种纳米级架构中,光收集介质是厚的MQW,它由六个周期的外延InGaN / GaN壳层组成,这些壳层同轴地沉积在GaN核心纳米线的半极性侧壁小面上。从长成的纳米线的详细特征证明了高纵横比和扩展到可见光谱的宽光响应。结果表明,这种纳米级光阳极可以将高达8.6%的照明光转换为光电流,可用于轻松生产氢燃料,其太阳能转化效率为0.21%,可与自然相比。光合作用。 (C)2014 Elsevier Ltd.保留所有权利。

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