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Effect of Pt/alumina catalyst preparation method on sensing performance of thermoelectric hydrogen sensor

机译:铂/氧化铝催化剂制备方法对热电氢传感器传感性能的影响

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We fabricated three different Pt/alumina catalysts for micro-thermoelectric hydrogen sensor (micro-THS). In the three Pt/alumina catalysts, two were prepared by impregnation of a commercial alumina with an aqueous solution of platinum (IV) chloride pentahydrate, and the third was prepared by impregnation of commercial alumina and nano-Pt with isobornyl acetate solution. To fabricate the micro-THS, the three Pt/alumina catalysts were integrated on thin membrane of the micro-THS, and its hydrogen sensing properties were investigated. The micro-THS with nano-Pt loaded alumina catalyst showed better sensing performance than those with Pt/alumina catalysts prepared by an aqueous solution of platinum (IV) chloride pentahydrate, because of effectively dispersed nano-Pt metal grain on the surface alumina grain observed by TEM. Its voltage signal was 15.7 mV for hydrogen concentration of 1% in dry air at catalyst temperature of 100 degrees C. (c) 2006 Springer Science + Business Media, Inc.
机译:我们为微热电氢传感器(micro-THS)制备了三种不同的Pt /氧化铝催化剂。在三种Pt /氧化铝催化剂中,两种是通过用五水合氯化铂(IV)的水溶液浸渍工业氧化铝而制备的,第三种是通过用乙酸异冰片酯溶液浸渍工业氧化铝和纳米Pt制备的。为了制备微型THS,将三种Pt /氧化铝催化剂整合在微型THS的薄膜上,并研究了其氢感测特性。具有纳米Pt负载的氧化铝催化剂的微型THS表现出比由五水合氯化铂(IV)水溶液制备的Pt /氧化铝催化剂更好的感测性能,因为观察到的纳米Pt金属颗粒有效地分散在表面氧化铝颗粒上通过TEM。催化剂温度为100摄氏度,干燥空气中氢气浓度为1%时,其电压信号为15.7 mV。(c)2006 Springer Science + Business Media,Inc.

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