Hydrogen Halide Gas Sensors: Active Materials, Operation Principles, and Emerging Technologies

Описание

Тип публикации: статья из журнала

Год издания: 2026

Идентификатор DOI: 10.1002/idm2.70028

Аннотация: <jats:title>ABSTRACT</jats:title> <jats:p>Hydrogen halide gases are one of the most wide-spread pollutants of atmosphere, which are generated by various industrial sectors or natural processes, and may dramatically affect human health above certain thresholds of exposure. Hence, it is critically important to develop effective sensiПоказать полностьюng methods for these gases. Herein, we review the recent progress as well as fundamental mechanisms, materials, and designs for the hydrogen halide gas sensors. We discuss in detail four major types of sensors: acoustic, chemical, optical, and the emerging nanophotonic sensors, categorizing them based on their operation principles. Acoustic sensors are discussed with a focus on microbalance-based and surface acoustic wave gas sensors. Chemical sensors are considered from the point of view of electrochemical and chemiresistive sensing mechanisms. Optical sensors are analyzed, covering fluorescence-based optical sensors, laser absorption-based techniques, photoacoustic spectroscopy, and nonlinear optical methods. Finally, emerging nanophotonic sensors are introduced, emphasizing plasmonic and all-dielectric nanophotonic approaches. We offer insights into the key operation mechanisms of different types of sensors for hydrogen halide gases and provide their direct comparison.</jats:p>

Ссылки на полный текст

Издание

Журнал: Interdisciplinary Materials

Выпуск журнала: Т. 5, 1

Номера страниц: 85-123

ISSN журнала: 2767441X

Издатель: Wiley

Персоны

  • Liu Xiuzhen (College of Physics and Optoelectronic Engineering Harbin Engineering University Harbin China)
  • Tukachev Nikita (College of Physics and Optoelectronic Engineering Harbin Engineering University Harbin China)
  • Wang Kehang (College of Physics and Optoelectronic Engineering Harbin Engineering University Harbin China)
  • Zhirihin Dmirty (School of Physics and Engineering ITMO University Lomonosova, 9 Saint-Petersburg Russia)
  • Cheng Yaopeng (Centre for Optical and Electromagnetic Research, National Engineering Research Center for Optical Instruments Zhejiang University Hangzhou China)
  • Krasnov Pavel (International Research Center of Spectroscopy and Quantum Chemistry Siberian Federal University Kirensky str. 26, Krasnoyarsk Russia)
  • Song Mingzhao (College of Physics and Optoelectronic Engineering Harbin Engineering University Harbin China)
  • Khubezhov Soslan (College of Physics and Optoelectronic Engineering Harbin Engineering University Harbin China)
  • Yin Wenping (College of Physics and Optoelectronic Engineering Harbin Engineering University Harbin China)
  • Stratakis Emmanuel (Institute of Electronic Structure and Laser (IESL) Foundation for Research and Technology-Hellas (FORTH) Heraklion-Crete Greece)
  • He Sailing (Centre for Optical and Electromagnetic Research, National Engineering Research Center for Optical Instruments Zhejiang University Hangzhou China)
  • Rogach Andrey L. (Department of Materials Science and Engineering, and Centre for Functional Photonics (CFP) City University of Hong Kong, Hong Kong SAR China)
  • Makarov Sergey (School of Physics and Engineering ITMO University Lomonosova, 9 Saint-Petersburg Russia)

Вхождение в базы данных