工业废气检测用复合导电聚合物传感器研究进展

IF 6.5 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Arunima Verma , Rajeev Gupta , Ajay Singh Verma , Tanuj Kumar
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引用次数: 9

摘要

为了维护人类和环境健康,检测有毒气体至关重要。多年来,研究人员经常关注工业废气,如CO, NO2, H2S和NH3。这些有害气体可以通过气体传感器检测到。导电聚合物在室温化学气体检测中显示出巨大的前景,因为它的导电性在暴露于氧化或还原气体分子时可能会发生变化,是这种传感器的一种有前途的材料。尽管在某些情况下,电导率降低以及对挥发性有机化合物和水分子的显著吸引力限制了其灵敏度、稳定性和气体选择性,使其不适合用作气体传感器。无机敏感材料在气体传感器中具有灵敏度高、对低浓度分析物响应快、表面积大、表面化学性质多变等优点,可作为导电聚合物传感能力的补充。随着它们的协同效应,将无机敏感材料与聚合物结合起来用于气体检测引起了很大的兴趣。本文综述了作为气敏材料的复合导电聚合物的研究进展。强调了影响传感器性能的几个因素的含义,如响应性、气体浓度、反应时间和导电聚合物的恢复时间。讨论了无机纳米材料在提高导电聚合物气敏性能方面的作用,以及导电-无机复合材料的发展,包括金属氧化物、金属碳纳米管和石墨烯。对含导电聚合物-无机复合材料的气体传感器进行了全面的展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A review of composite conducting polymer-based sensors for detection of industrial waste gases

A review of composite conducting polymer-based sensors for detection of industrial waste gases

To maintain human and environmental health, it is essential to detect toxic gases. Over the years, researchers have often focused on industrial waste gases like CO, NO2, H2S, and NH3. These hazardous gases can be detected by gas sensors.The conducting polymer, which has shown tremendous promise in room-temperature chemical gas detection due to the fact that its electrical conductivity may change when exposed to oxidative or reductive gas molecules, is one promising material for this sensor. Although in some circumstances, the decreased conductivity and significant attraction to volatile organic compounds and water molecules restrict sensitivity, stability, and gas selectivity, making them unsuitable for use as gas sensors. Inorganic sensitive materials provide various advantages in gas sensors, such as high sensitivity, rapid response to low-concentration analytes, a vast surface area, and changeable surface chemistry, which may supplement the sensing capabilities of conducting polymers. Along with their synergistic effects, there is a great deal of interest in combining inorganic sensitive materials with polymers for gas detection. This review focuses on the development of composite conducting polymers as gas-sensing materials. The implications of several factors affecting sensor performance, such as responsiveness, gas concentration, reaction time, and recovery time of conducting polymers, are highlighted. The function of inorganic nanomaterials in enhancing the gas-sensing performance of conducting polymers is discussed, as well as the development of conducting-inorganic composites including metal oxides, metal, and (carbon nanotube, and graphene. A comprehensive outlook on the topic of gas sensors containing conducting polymer-inorganic composites is delivered.

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来源期刊
CiteScore
9.60
自引率
0.00%
发文量
60
审稿时长
49 days
期刊介绍: Sensors and Actuators Reports is a peer-reviewed open access journal launched out from the Sensors and Actuators journal family. Sensors and Actuators Reports is dedicated to publishing new and original works in the field of all type of sensors and actuators, including bio-, chemical-, physical-, and nano- sensors and actuators, which demonstrates significant progress beyond the current state of the art. The journal regularly publishes original research papers, reviews, and short communications. For research papers and short communications, the journal aims to publish the new and original work supported by experimental results and as such purely theoretical works are not accepted.
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