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Boosting the sensing properties of resistive-based gas sensors by irradiation techniques: a review

机译:促进resistive-based的传感特性气体传感器通过辐照技术:一个回顾

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摘要

The ongoing need to detect and monitor hazardous, volatile, and flammable gases has led to the use of gas sensors in several fields to improve safety and health issues. Conductometric type gas sensors, which have considerable advantages over other gas sensors, have thrived in numerous gas sensing fields. The ever-present key challenges and requirements of these sensors are to achieve excellent performance, including high sensitivity, good selectivity, low working temperature, and durability. Therefore, tremendous research effort has focused on improving these properties, and various state-of-the-art techniques have been reported. This review article discusses the recent advances and utilization of various irradiation techniques, including electron-beam, microwave, ion-beam, and gamma-ray irradiation, along with their investigation of the effects on the physicochemical properties of pre-synthesized nanomaterials, sensing performances, and related gas sensing mechanisms. A review of the progress on the effects of different irradiation techniques for boosting the sensing properties can contribute to the evolution of highly reliable sensors to assess the environment and health. For researchers, who work on gas sensors, this paper provides information on the current trends on the advances in the novel state-of-art of irradiated materials and their promising application in the sensitive detection of various toxic and VOCs.
机译:目前需要检测和监控危险,不稳定,导致使用易燃气体气体传感器在几个领域的改善安全与健康问题。传感器,具有相当大的优势其他气体传感器,在大量的气体传感领域。和要求的这些传感器来实现优秀的性能,包括高灵敏度,选择性好,较低的工作温度,和持久性。巨大的研究工作都集中在提高这些属性,和各种先进的技术报告。这篇评论文章讨论了最新进展利用不同的辐照技术,包括电子束、微波离子束,伽马射线辐照调查的影响pre-synthesized本身的理化特性纳米材料、传感性能和相关的气体传感机制。在不同的辐射的影响技术推动传感特性能导致高度的进化评估环境和可靠的传感器健康。本文提供了关于当前的信息在小说艺术的进步趋势辐照的材料和他们的承诺应用程序在不同的敏感检测毒性和挥发性有机化合物的仪器。

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