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Characterization and Gas Sensing Properties of Copper-doped Tin Oxide Thin Films Deposited by Ultrasonic Spray Pyrolysis

机译:超声喷涂热解沉积铜掺杂氧化锡薄膜的表征及气敏特性

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Tin oxide-based thin films are deposited by ultrasonic spray pyrolysis technology, in which Cu addition is introduced to enhance the gas sensing performance by H2S detection. The thin films are porous and comprise nano-sized crystallites. One of the Cu-containing thin film sensors demonstrates a fast and significant response to H2S gas. The values of power law exponent n are calculated to discuss the sensitivity of the sensors, which is significantly promoted by Cu additive. The sensitivity of Cu-doped SnO2 gas sensors is determined by two mechanisms. One is the normal gas sensing mechanism of SnO2 grains, and the other is the promoted mechanism caused by the transformation between CuO and CuS in the H2S detection.
机译:通过超声喷雾热解技术沉积基于氧化锡的薄膜,其中引入铜添加以通过H2S检测增强气体感测性能。薄膜是多孔的并且包含纳米级的微晶。一种含铜薄膜传感器表现出对H2S气体的快速而显着的响应。计算幂律指数n的值来讨论传感器的灵敏度,而Cu添加剂会大大提高传感器的灵敏度。掺杂Cu的SnO2气体传感器的灵敏度由两种机制确定。一种是正常的SnO2颗粒的气敏机理,另一种是由于H2S检测中CuO和CuS之间的转变引起的促进机理。

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