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Influence of Catalyst Loading Method on Titania-Based Optical Hydrogen Gas Sensing Properties

机译:催化剂负载方法对基于二氧化钛的光学氢气传感性能的影响

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We reported that titania ceramic coating loaded with palladium catalyst worked as an optical hydrogen gas sensor at room temperature. The palladium metal of this sensor worked as a catalyst not only for room-temperature operation but also for high selectivity to hydrogen gas. Precise control of metal/ceramic interface between the titania and the palladium was very important in order to improve the sensor performance such as sensitivity, response time, recovery time. Influence of a difference in palladium-catalyst loading method (photodeposition and sputtering) on the optical hydrogen gas sensing properties for the titania-based sensor was investigated. It was found that the catalytic loading process significantly affected the optical hydrogen characteristics of the titania-based coating.
机译:我们报道,用钯催化剂负载的二氧化钛陶瓷涂层作为光学氢气传感器在室温下工作。该传感器的钯金属作为室温操作的催化剂,还适用于对氢气的高选择性。精确控制二氧化钛和钯之间的金属/陶瓷界面非常重要,以便改善传感器性能,例如灵敏度,响应时间,恢复时间。研究了钯 - 催化剂负载方法(光致沉积和溅射)对基于二氧化钛的传感器光学氢气传感性能的影响。发现催化负载过程显着影响了钛菊酯的光学氢特性。

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