纳米银对zno厚膜气敏性能的影响

M. K. Deore, G. Jain, V. Gaikwad, P. Khanna
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引用次数: 1

摘要

采用丝网印刷技术制备了AR级ZnO厚膜。测试了厚膜对各种气体的气敏性能。当气体浓度为100 ppm时,对100℃的CO气体具有最大的灵敏度。为了提高薄膜对特定气体的灵敏度和选择性,将ZnO厚膜浸在纳米银溶液中不同时间间隔进行表面改性。在300℃温度下,表面改性ZnO薄膜对H2S气体(100 ppm)的敏感性高于纯ZnO薄膜。薄膜表面的纳米银将薄膜的反应性从CO转变为H2S气体。对传感器传感性能的系统研究表明,纳米银在传感器表面起着关键作用。测量了传感器的灵敏度、选择性、响应和恢复时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of nano Ag on gas sensing performance of ZnOThick films
Thick films of AR grade ZnO were prepared by screen-printing technique. The gas sensing performance of thick films were tested for various gases. It showed maximum sensitivity to CO gas at 100degC for 100 ppm gas concentration. To improve the sensitivity and selectivity of the film towards a particular gas, ZnO thick films were surface modified by dipping them in a solution of nano silver for different intervals of time. These surface modified ZnO films showed larger sensitivity to H2S gas (100 ppm) than pure ZnO film at 300degC. Nano silver on the surface of the film shifts the reactivity of film from CO to H2S gas. A systematic study, of sensing performance of the sensor, indicates the key role-played by the nano silver species on the surface. The sensitivity, selectivity, response and recovery time of the sensor were measured and presented.
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