设计最先进的气体传感器:从基础到应用。

IF 7 2区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical record Pub Date : 2024-02-14 DOI:10.1002/tcr.202300350
Dr. Muhammad Humayun, Prof. Mohamed Bououdina, Dr. Muhammad Usman, Prof. Dr. Abbas Khan, Prof. Wei Luo, Prof. Chundong Wang
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引用次数: 0

摘要

气体传感器在环境监测、工业安全和医疗诊断中至关重要。由于对精确可靠的气体检测的需求不断增长,对具有超高灵敏度、选择性和稳定性的尖端气体传感器的需求也在不断增长。由于纳米材料具有可调的电特性、高密度的表面活性位点和显著的表面积比,因此在这方面得到了广泛的研究。传统的气体传感器利用均质材料进行传感,其中吸附的表面氧物种对其传感活性起着至关重要的作用。然而,由于采用高温导致稳定性差,它们在选择性气体传感方面的性能仍然不尽人意。异质结构纳米材料可以很容易地调节传感性能,其不同的能带结构、功函数、电荷载流子浓度和极性以及界面带排列可以被精确设计,从而在低温下实现高性能的选择性气体传感。在这篇综述文章中,我们将详细讨论半导体气体传感的基本原理及其机理。此外,我们还强调了半导体气体传感领域存在的挑战。此外,我们还从不同角度回顾了半导体气体传感器应用设计的最新进展。最后,我们讨论了提高气体传感性能的结论和未来展望。
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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Designing State-of-the-Art Gas Sensors: From Fundamentals to Applications

Gas sensors are crucial in environmental monitoring, industrial safety, and medical diagnostics. Due to the rising demand for precise and reliable gas detection, there is a rising demand for cutting-edge gas sensors that possess exceptional sensitivity, selectivity, and stability. Due to their tunable electrical properties, high-density surface-active sites, and significant surface-to-volume ratio, nanomaterials have been extensively investigated in this regard. The traditional gas sensors utilize homogeneous material for sensing where the adsorbed surface oxygen species play a vital role in their sensing activity. However, their performance for selective gas sensing is still unsatisfactory because the employed high temperature leads to the poor stability. The heterostructures nanomaterials can easily tune sensing performance and their different energy band structures, work functions, charge carrier concentration and polarity, and interfacial band alignments can be precisely designed for high-performance selective gas sensing at low temperature. In this review article, we discuss in detail the fundamentals of semiconductor gas sensing along with their mechanisms. Further, we highlight the existed challenges in semiconductor gas sensing. In addition, we review the recent advancements in semiconductor gas sensor design for applications from different perspective. Finally, the conclusion and future perspectives for improvement of the gas sensing performance are discussed.

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来源期刊
Chemical record
Chemical record 化学-化学综合
CiteScore
11.00
自引率
3.00%
发文量
188
审稿时长
>12 weeks
期刊介绍: The Chemical Record (TCR) is a "highlights" journal publishing timely and critical overviews of new developments at the cutting edge of chemistry of interest to a wide audience of chemists (2013 journal impact factor: 5.577). The scope of published reviews includes all areas related to physical chemistry, analytical chemistry, inorganic chemistry, organic chemistry, polymer chemistry, materials chemistry, bioorganic chemistry, biochemistry, biotechnology and medicinal chemistry as well as interdisciplinary fields. TCR provides carefully selected highlight papers by leading researchers that introduce the author''s own experimental and theoretical results in a framework designed to establish perspectives with earlier and contemporary work and provide a critical review of the present state of the subject. The articles are intended to present concise evaluations of current trends in chemistry research to help chemists gain useful insights into fields outside their specialization and provide experts with summaries of recent key developments.
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