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韩国化学电阻式气体传感器的最新研究进展:重点介绍 Hyoun Woo Kim 和 Sang Sub Kim 教授研究实验室的成果。

State-of-the-Art Research on Chemiresistive Gas Sensors in Korea: Emphasis on the Achievements of the Research Labs of Professors Hyoun Woo Kim and Sang Sub Kim.

机构信息

Division of Materials Science and Engineering, Hanyang University, Seoul 04763, Korea.

The Research Institute of Industrial Science, Hanyang University, Seoul 04763, Korea.

出版信息

Sensors (Basel). 2021 Dec 23;22(1):61. doi: 10.3390/s22010061.

Abstract

This review presents the results of cutting-edge research on chemiresistive gas sensors in Korea with a focus on the research activities of the laboratories of Professors Sang Sub Kim and Hyoun Woo Kim. The advances in the synthesis techniques and various strategies to enhance the gas-sensing performances of metal-oxide-, sulfide-, and polymer-based nanomaterials are described. In particular, the gas-sensing characteristics of different types of sensors reported in recent years, including core-shell, self-heated, irradiated, flexible, Si-based, glass, and metal-organic framework sensors, have been reviewed. The most crucial achievements include the optimization of shell thickness in core-shell gas sensors, decrease in applied voltage in self-heated gas sensors to less than 5 V, optimization of irradiation dose to achieve the highest response to gases, and the design of selective and highly flexible gas sensors-based WS nanosheets. The underlying sensing mechanisms are discussed in detail. In summary, this review provides an overview of the chemiresistive gas-sensing research activities led by the corresponding authors of this manuscript.

摘要

这篇综述介绍了韩国化学电阻式气体传感器的前沿研究成果,重点介绍了 Sang Sub Kim 和 Hyoun Woo Kim 教授实验室的研究活动。描述了金属氧化物、硫化物和聚合物基纳米材料的合成技术以及各种提高气体传感性能的策略的进展。特别是,综述了近年来报道的不同类型传感器的气体传感特性,包括核壳、自加热、辐照、柔性、基于 Si、玻璃和金属有机骨架的传感器。最关键的成就是优化了核壳气体传感器的壳层厚度,将自加热气体传感器的应用电压降低到 5 V 以下,优化了辐照剂量以实现对气体的最高响应,并设计了基于 WS 纳米片的选择性和高柔韧性气体传感器。详细讨论了潜在的传感机制。总之,本综述概述了本文相应作者领导的化学电阻式气体传感研究活动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca75/8747108/d0d8724d7447/sensors-22-00061-sch001.jpg

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