Nasriddinov Abulkosim, Zairov Rustem, Rumyantseva Marina
Chemistry Department, Moscow State University, Moscow, Russia.
Federal Research Center Kazan Scientific Center of Russian Academy of Sciences, Kazan, Russia.
Front Chem. 2025 Feb 25;13:1538217. doi: 10.3389/fchem.2025.1538217. eCollection 2025.
Resistive type gas sensors based on wide-bandgap semiconductor oxides are remaining one of the principal players in environmental air monitoring. The rapid development of technology and the desire to miniaturize electronics require the creation of devices with minimal energy consumption. A promising solution may be the use of photoactivation, which can initiate/accelerate physico-chemical processes at the solid-gas interface and realize detection of flammable and explosive gases at close to room temperature. This work examines the mechanism underlying the increased sensitivity to various gases under photoactivation. The review is intended to clarify the current situation in the field of light-activated gas sensors and set the vector for their further development in order to integrate with the latest technological projects.
基于宽带隙半导体氧化物的电阻式气体传感器仍然是环境空气监测的主要手段之一。技术的快速发展以及电子设备小型化的需求,要求制造出能耗最低的设备。一个有前景的解决方案可能是利用光激活,它可以启动/加速固-气界面处的物理化学过程,并在接近室温的条件下实现对可燃和易爆气体的检测。这项工作研究了光激活下对各种气体灵敏度提高的潜在机制。这篇综述旨在阐明光激活气体传感器领域的现状,并为其进一步发展设定方向,以便与最新的技术项目相结合。