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Semiconductor Metal Oxides as Chemoresistive Sensors for Detecting Volatile Organic Compounds

机译:作为用于检测挥发性有机化合物的半导体金属氧化物作为化学式传感器

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摘要

Volatile organic compounds (VOCs), which originate from painting, oil refining and vehicle exhaust emissions, are hazardous gases that have significant effects on air quality and human health. The detection of VOCs is of special importance to environmental safety. Among the various detection methods, chemoresistive semiconductor metal oxide gas sensors are considered to be the most promising technique due to their easy production, low cost and good portability. Sensitivity is an important parameter of gas sensors and is greatly affected by the microstructure, defects, catalyst, heterojunction and humidity. By adjusting the aforementioned factors, the sensitivity of gas sensors can be improved further. In this review, attention will be focused on how to improve the sensitivity of chemoresistive gas sensors towards certain common VOCs with respect to the five factors mentioned above.
机译:源于绘画,炼油和车辆排放的挥发性有机化合物(VOC)是对空气质量和人类健康产生显着影响的危险气体。 VOC的检测对于环境安全性很重要。 在各种检测方法中,由于其易于生产,低成本和良好的便携性,化学致病性半导体金属氧化物气体传感器被认为是最有希望的技术。 敏感性是气体传感器的重要参数,受微观结构,缺陷,催化剂,异质结和湿度的大大影响。 通过调节上述因素,可以进一步提高气体传感器的灵敏度。 在本综述中,注意力将重点关注如何在上述五种因素方面提高化学气体传感器对某些常见VOC的敏感性。

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