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Preparation of highly selective, sensitive and stable hydrogen sensors based on Pd-doped tungsten trioxide

机译:基于PD掺杂钨三氧化物的高选择性,敏感型氢传感器的制备

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In this paper, highly selective, sensitive and stable hydrogen sensors based on Pd-doped tungsten trioxide were successfully prepared by promoting way. Two different morphologies of WO3 were obtained by chemical route synthesis (WO3 nano-particles and WO3 micro-lamellae), their morphologies were observed by SEM and TEM microscopy and their crystalline structures were determined by X-ray diffraction (XRD). To prepare Pd-doped WO3 films, palladium chloride salt/WO3 was highly dispersed in organic solution using sonication, the resultant Pd-WO3 dispersion was drop coated on the alumina substrate fitted with gold electrodes and annealed at 500°C. The gas sensing properties of Pd-doped WO3 films to reducing gases (NH3, CO, H2) were studied at different operating temperatures. The sensors have shown high sensitivity and selectivity to hydrogen at working temperature of 200°C. The sensors with low Pd loading (0.4 wt %) has shown the best stability and reproducibility. In these last conditions, the sensors have shown no obvious response to ammonia (< lppm) and insignificant response to carbon monoxide (≤ 200 ppm).
机译:本文通过促进方式成功地制备了基于PD掺杂钨三氧化钨的高选择性和稳定的氢传感器。通过化学途径合成(WO3纳米颗粒和WO3微薄)获得两种不同的WO3形态,通过SEM和TEM显微镜观察它们的形态,并通过X射线衍射(XRD)测定它们的结晶结构。为了制备PD掺杂WO3薄膜,使用超声处理将氯化钯盐/ WO3高度分散在有机溶液中,将得到的PD-WO3分散体涂覆在装有金电极的氧化铝基板上并在500℃下退火。在不同的操作温度下研究了PD掺杂WO3薄膜对降低气体(NH3,CO,H 2)的气体感测性能。传感器在200℃的工作温度下显示出高灵敏度和对氢的选择性。具有低PD负载(0.4wt%)的传感器表明了最佳稳定性和再现性。在这些最后条件下,传感器显示对氨(

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