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新型BiVO/CuO异质结的合成用于改善BiVO对NO的传感性能。

Synthesis of novel BiVO/CuO heterojunctions for improving BiVO towards NO sensing properties.

作者信息

Bai Shouli, Li Qiangqiang, Han Ning, Zhang Kewei, Tang Pinggui, Feng Yongjun, Luo Ruixian, Li Dianqing, Chen Aifan

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing Key Laboratory of Environmentally Harmful Chemicals Analysis, Beijing University of Chemical Technology, Beijing 100029, China.

State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China.

出版信息

J Colloid Interface Sci. 2020 May 1;567:37-44. doi: 10.1016/j.jcis.2020.01.104. Epub 2020 Jan 31.

Abstract

To develop a high sensitive and low temperature NO gas sensor, the novel BiVO/CuO heterojunctions were synthesized by a modified metal organic decomposition method to decorate BiVO nanoplates using CuO nanoparticles for enhancement of BiVO sensing performance to NO The structure and morphology of BiVO, CuO and BiVO/CuO composites were characterized by XRD, SEM and TEM spectra. The results indicate that the BiVO/CuO heterojunctions are composed of monoclinic BiVO nanoplates with the thickness about 1.0-1.2 μm and 30-40 nm diameters of cubic CuO nanoparticles. The gas-sensing tests display that the composite exhibits rapid and linear responses to low concentration NO (from 100 ppb to 8.0 ppm), the highest response reaches 4.2 towards 4 ppm NO at 60 °C and relative humidity of 28.3%, which is more than 2 times of pure BiVO at the same condition. The enhanced sensing properties benefit from the novel p-n heterojunction between BiVO and CuO, which forms a depletion layer at the interface, leading to resistance increase of composites in NO. The work demonstrates the as-synthesized BiVO/CuO is a promising sensing material to detect NO gas.

摘要

为了开发一种高灵敏度、低温的NO气体传感器,采用改进的金属有机分解法合成了新型BiVO/CuO异质结,用CuO纳米颗粒修饰BiVO纳米片,以提高BiVO对NO的传感性能。通过XRD、SEM和TEM光谱对BiVO、CuO和BiVO/CuO复合材料的结构和形貌进行了表征。结果表明,BiVO/CuO异质结由厚度约为1.0 - 1.2μm的单斜BiVO纳米片和直径为30 - 40nm的立方CuO纳米颗粒组成。气敏测试表明,该复合材料对低浓度NO(从100 ppb到8.0 ppm)表现出快速且线性的响应,在60°C、相对湿度为28.3%时,对4 ppm NO的最高响应达到4.2,是相同条件下纯BiVO的2倍多。增强的传感性能得益于BiVO和CuO之间新型的p-n异质结,该异质结在界面处形成耗尽层,导致复合材料在NO中电阻增加。这项工作表明,所合成的BiVO/CuO是一种有前途的用于检测NO气体的传感材料。

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