4.6 Review

Selectivity in trace gas sensing: recent developments, challenges, and future perspectives

期刊

ANALYST
卷 147, 期 6, 页码 1024-1054

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1an02070f

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  1. Technical Research Centre (TRC) of the S. N. Bose National Centre for Basic Sciences, Kolkata [All1/64/SNB/2014(C)]

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Selectivity is a crucial factor in trace gas sensing, but the current research on selectivity is limited. Existing reviews focus on specific types of sensors or technological developments, lacking a comprehensive assessment of selectivity. Solid state sensors, which are flexible, portable, and cost-effective, have been the main focus of research, but their selectivity is low in harsh environments. Therefore, this paper evaluates the limitations and possible solutions to selectivity issues in different gas sensors, and discusses future prospects.
Selectivity is one of the most crucial figures of merit in trace gas sensing, and thus a comprehensive assessment is necessary to have a clear picture of sensitivity, selectivity, and their interrelations in terms of quantitative and qualitative views. Recent reviews on gas sensors/techniques are limited to specific sensors, sensors with unconventional materials, various technological exploitation, or specific applications. However, the selectivity is either unexplored in most cases or explained concerning the materials/techniques involved in a demonstration. Therefore, there is a pressing need to identify the possible ways to improve the selectivity of a gas sensor/technique with low or zero cross-sensitivity to other compounds/gases present in the working environment. Analytical techniques involving spectroscopic and mass-spectrometry-based methods are excellent in selectivity but have limited applicability for field deployment compared to the miniatured solid state sensors. Solid state sensors are the mainly studied gas sensors due to their flexibility, portability, and cost-effectiveness, and being technologically favorable but suffer from low selectivity in harsh and humid environments. This review will evaluate the limitations and possible solutions to selectivity issues in a wide variety of gas sensors. Here, we have discussed the gas-sensor technologies and underlying sensing mechanisms in two main groups - spectroscopic and non-spectroscopic. Recent state-of-the-art techniques and fundamental challenges are discussed to improve the selectivity and other gas sensor indicators and future perspectives.

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