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Zinc Oxide Nanostructures for NO2 Gas–Sensor Applications: A Review

机译:用于NO2气体传感器应用的氧化锌纳米结构:综述

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摘要

Because of the interesting and multifunctional properties, recently, ZnO nanostructures are considered as excellent material for fabrication of highly sensitive and selective gas sensors. Thus, ZnO nanomaterials are widely used to fabricate efficient gas sensors for the detection of various hazardous and toxic gases. The presented review article is focusing on the recent developments of NO2 gas sensors based on ZnO nanomaterials. The review presents the general introduction of some metal oxide nanomaterials for gas sensing application and finally focusing on the structure of ZnO and its gas sensing mechanisms. Basic gas sensing characteristics such as gas response, response time, recovery time, selectivity, detection limit, stability and recyclability, etc are also discussed in this article. Further, the utilization of various ZnO nanomaterials such as nanorods, nanowires, nano-micro flowers, quantum dots, thin films and nanosheets, etc for the fabrication of NO2 gas sensors are also presented. Moreover, various factors such as NO2 concentrations, annealing temperature, ZnO morphologies and particle sizes, relative humidity, operating temperatures which are affecting the NO2 gas sensing properties are discussed in this review. Finally, the review article is concluded and future directions are presented.
机译:由于有趣和多功能的特性,最近,ZnO纳米结构被认为是制造高灵敏度和选择性气体传感器的出色材料。因此,ZnO纳米材料被广泛用于制造有效的气体传感器,以检测各种有害和有毒气体。提出的评论文章重点关注基于ZnO纳米材料的NO2气体传感器的最新发展。综述介绍了一些用于气体传感的金属氧化物纳米材料的一般介绍,最后重点介绍了ZnO的结构及其气体传感机理。本文还讨论了基本的气体传感特性,例如气体响应,响应时间,恢复时间,选择性,检测极限,稳定性和可回收性等。此外,还提出了利用各种ZnO纳米材料,例如纳米棒,纳米线,纳米微花,量子点,薄膜和纳米片等来制造NO 2气体传感器。此外,本文还讨论了影响NO2气敏特性的各种因素,例如NO2浓度,退火温度,ZnO形态和粒径,相对湿度,工作温度。最后,总结了这篇文章,并提出了未来的方向。

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