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首页> 外文期刊>Journal of materials science >Room temperature chemiresistive gas sensors: challenges and strategies-a mini review
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Room temperature chemiresistive gas sensors: challenges and strategies-a mini review

机译:室温化学电阻式气体传感器:挑战和策略-小型回顾

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摘要

One of the sources of environmental threat in recent years is the leakage of toxic gases from various industries. Sensors to detect these gases in trace level concentrations are highly required to ensure a safe living environment. In this context, many types of gas sensors such as calorimetric, conductometric, potentiometric, catalytic, and chemiresistive types have been employed to detect these gases. Among them, chemiresistive type sensors have been widely employed due to high selectivity, sensitivity, simplicity in fabrication, compactness, lower operating temperature, and low power consumption. Chemiresistive sensors are designed with inbuilt micro-heaters for improving the sensing response. However, sensors operated at elevated operating temperatures would significantly affect the stability of the sensor due to grain growth. To address this concern, many efforts have been progressing over the years towards the development of room temperature operated gas sensors. In this review, room temperature operated gas sensors developed for the detection of ammonia, acetaldehyde, ethanol, nitrogen dioxide, ozone, and aromatic VOCs have been discussed. In addition, the major challenges possessed by the sensors operated at elevated temperatures such as grain growth, change of conductivity, and variations in charge transport characteristics have been addressed. Also, the strategies to minimize the aforementioned challenges have been highlighted.
机译:近年来,环境威胁的来源之一是各行各业的有毒气体泄漏。为了确保安全的生活环境,强烈需要使用传感器来检测痕量浓度的这些气体。在这种情况下,许多类型的气体传感器,例如量热,电导,电位,催化和化学电阻类型,已被用来检测这些气体。其中,由于高选择性,灵敏度,制造简单,紧凑,较低的工作温度和低功耗,化学阻隔型传感器已被广泛采用。化学电阻式传感器设计有内置的微型加热器,用于改善感测响应。但是,由于晶粒长大,在较高的工作温度下运行的传感器会严重影响传感器的稳定性。为了解决这个问题,多年来,在开发室温下操作的气体传感器方面已经进行了许多努力。在这篇综述中,讨论了开发用于检测氨,乙醛,乙醇,二氧化氮,臭氧和芳香族VOC的室温操作气体传感器。此外,已经解决了在高温下运行的传感器所面临的主要挑战,例如晶粒生长,电导率变化以及电荷传输特性的变化。而且,已经强调了最小化上述挑战的策略。

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