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用于检测致命硫化氢气体的传感器的开发。

Development of a detection sensor for lethal H2S gas.

作者信息

Park Young-Ho, Kim Yong-Jae, Lee Chang-Seop

机构信息

Department of Chemistry, Keimyung University, Daegu, 704-701, Korea.

出版信息

J Nanosci Nanotechnol. 2012 Jul;12(7):5283-9. doi: 10.1166/jnn.2012.6355.

Abstract

The gas which may be lethal to human body with short-term exposure in common industrial fields or workplaces in LAB may paralyze the olfactory sense and impose severe damages to central nervous system and lung. This study is concerned with the gas sensor which allows individuals to avoid the toxic gas that may be generated in the space with residues of organic wastes under 50 degrees C or above. This study investigates response and selectivity of the sensor to hydrogen sulfide gas with operating temperatures and catalysts. The thick-film semiconductor sensor for hydrogen sulfide gas detection was fabricated WO3/SnO2 prepared by sol-gel and precipitation methods. The nanosized SnO2 powder mixed with the various metal oxides (WO3, TiO2, and ZnO) and doped with transition metals (Au, Ru, Pd Ag and In). Particle sizes, specific surface areas and phases of sensor materials were investigated by SEM, BET and XRD analyses. The metal-WO3/SnO2 thick films were prepared by screen-printing method. The measured response to hydrogen sulfide gas is defined as the ratio (Ra/R,) of the resistance of WO3ISnO2 film in air to the resistance of WO3/SnO2 film in a hydrogen sulfide gas. It was shown that the highest response and selectivity of the sensor for hydrogen sulfide by doping with 1 wt% Ru and 10 wt% WO3 to SnO2 at the optimum operating temperature of 200 degrees C.

摘要

在实验室的普通工业领域或工作场所中,短期接触可能对人体致命的气体可能会麻痹嗅觉,并对中枢神经系统和肺部造成严重损害。本研究关注的是一种气体传感器,它能让人们避免在50摄氏度及以上存在有机废物残留的空间中可能产生的有毒气体。本研究通过操作温度和催化剂来研究该传感器对硫化氢气体的响应和选择性。采用溶胶 - 凝胶法和沉淀法制备了用于检测硫化氢气体的厚膜半导体传感器WO3/SnO2。将纳米尺寸的SnO2粉末与各种金属氧化物(WO3、TiO2和ZnO)混合,并掺杂过渡金属(Au、Ru、Pd、Ag和In)。通过扫描电子显微镜(SEM)、比表面积分析仪(BET)和X射线衍射仪(XRD)分析研究了传感器材料的粒径、比表面积和相。采用丝网印刷法制备了金属 - WO3/SnO2厚膜。对硫化氢气体的测量响应定义为WO3/SnO2薄膜在空气中的电阻与在硫化氢气体中的电阻之比(Ra/R)。结果表明,在200摄氏度的最佳操作温度下,向SnO2中掺杂1 wt%的Ru和10 wt%的WO3时,传感器对硫化氢具有最高的响应和选择性。

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