Recent advances in g-C3N4 based gas sensors for the detection of toxic and flammable gases: a review

Vijendra Singh Bhati, Vishakha Takhar, R. Raliya, Mahesh Kumar, R. Banerjee
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引用次数: 8

Abstract

In recent years, many 2D nanomaterials like graphene, MoS2, phosphorene, and metal oxide nanosheets have been investigated for gas sensing applications due to their excellent properties. Amongst other 2D nanomaterials, graphitic carbon nitride (g-C3N4) has attracted significant attention owing to its simple synthesis process, tunable electronic properties, and exceptional physicochemical properties. Such remarkable properties assert g-C3N4 as a potential candidate for the next-generation high-performance gas sensors employed in the detection of toxic and flammable gases. Although several articles and reviews are available on g-C3N4 for their synthesis, functionalities, and applications for the detection of humidity. Few of them have focused their attention on gas sensing using g-C3N4. Thus, in this review, we have methodically summed up the recent advances in g-C3N4 and its composites-based gas sensor for the detection of toxic and flammable gases. Moreover, we have also incorporated the synthesis strategies and the comprehensive physics of g-C3N4 based gas sensors. Additionally, different approaches are presented for the enhancement of gas sensing/detecting properties of g-C3N4 based gas sensors. Finally, the challenges and future scope of g-C3N4 based gas sensors for real-time monitoring of gases have been discussed.
基于g-C3N4的有毒和可燃气体检测气体传感器的最新进展综述
近年来,许多二维纳米材料,如石墨烯、二硫化钼、磷烯和金属氧化物纳米片,由于其优异的性能,已被研究用于气敏应用。在其他二维纳米材料中,石墨氮化碳(g-C3N4)因其简单的合成工艺、可调的电子性能和优异的物理化学性能而备受关注。如此卓越的性能使g-C3N4成为用于检测有毒和可燃气体的下一代高性能气体传感器的潜在候选者。虽然关于g-C3N4的合成、功能和湿度检测的应用有几篇文章和评论。他们中很少有人把注意力集中在使用g-C3N4的气体传感上。因此,在这篇综述中,我们系统地总结了g-C3N4及其复合材料气体传感器在检测有毒气体和可燃气体方面的最新进展。此外,我们还结合了基于g-C3N4的气体传感器的合成策略和综合物理。此外,提出了不同的方法来增强基于g-C3N4的气体传感器的气体传感/检测性能。最后,讨论了基于g-C3N4的气体传感器用于气体实时监测的挑战和未来范围。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
6.40
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