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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >A novel approach to improving oxidizing-gas sensing ability of p-CuO nanowires using biased radial modulation of a hole-accumulation layer
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A novel approach to improving oxidizing-gas sensing ability of p-CuO nanowires using biased radial modulation of a hole-accumulation layer

机译:利用空穴累积层的径向偏置调制提高p-CuO纳米线对氧化气体的检测能力的新方法

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摘要

The attachment of n-TiO2 nanoparticles (NPs) onto networked p-CuO nanowires (NWs) greatly improves the sensing abilities of the NWs for oxidizing gases. However, the attachment is harmful to the detection of reducing gases. In contrast to the case of pristine p-CuO NWs in which the hole-accumulation layer is equally modulated in the radial direction in NWs during adsorption and desorption of oxidizing and reducing gases, the attachment of n-TiO2 NPs induces less modulation for reducing gases but more modulation for oxidizing gases. This is because a biased modulation of the hole-accumulation layer is established by the charge carrier transfer between NWs and NPs. The approach in this study provides an insight into designing p-type NW sensors for sensitive detection of oxidizing gases.
机译:将n-TiO2纳米颗粒(NPs)附着到网络化的p-CuO纳米线(NWs)上可以大大提高NWs对氧化气体的传感能力。但是,该附件对还原性气体的检测有害。与原始p-CuO NW的情况相反,原始p-CuO NW在氧化性和还原性气体的吸附和解吸过程中沿NWs在径向方向上均等地调制了空穴积累层,而n-TiO2 NP的附着导致对还原性气体的调制较少但是对氧化性气体的调制更多。这是因为空穴积累层的偏置调制是通过NW和NP之间的电荷载流子转移建立的。本研究中的方法为设计用于敏感检测氧化性气体的p型NW传感器提供了见识。

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