首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >One-dimensional CuO-SnO2 p-n heterojunctions for enhanced detection of H2S
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One-dimensional CuO-SnO2 p-n heterojunctions for enhanced detection of H2S

机译:一维CuO-SnO2 p-n异质结,用于增强对H2S的检测

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摘要

Highly crystalline SnO2 nanowires were synthesized and functionalized with copper particles in a CVD using Sn(OBu~t)4 and [Cu~(II)((C5H4N)(CHCOCF3))2]2 (1) as precursors respectively Controlled oxidation of Cu to CuO led to the formation of CuO@SnO2 p-n heterojunctions, which were found to be highly sensitive and selective towards the detection of H2S gas. The change in the conductance upon exposure to H2S gas was attributed to the formation of CuS resulting in the shrinkage of the space charge region along the SnO2 nanowire and a concomitant increase of the conductivity channel in an individual nanowire.
机译:分别使用Sn(OBu〜t)4和[Cu〜(II)((C5H4N)(CHCOCF3))2] 2(1)分别合成高结晶SnO2纳米线并用CVD在铜中对其进行功能化CuO导致CuO @ SnO2 pn异质结的形成,发现它们对H2S气体的检测具有高度的敏感性和选择性。暴露于H2S气体后电导率的变化归因于CuS的形成,导致沿SnO2纳米线的空间电荷区域收缩,并伴随着单个纳米线中电导率通道的增加。

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