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Unidentified H_2 gas sensing characteristics of BaTiO_3:Cu composition

机译:BaTiO_3:Cu成分的不确定H_2气敏特性

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A systematic evaluation of the gas sensing properties of Cu-modified BaTiO_3 pellets for CO, H_2 and LPG gases was carried out in the present investigation. The concentration of Cu in BaTiO_3 was varied systematically from 1 to 11 wt.%. The highest value of sensitivity factor (SF) of 1388 for H_2 and 557 for CO gases was obtained at considerably lower optimum operating temperatures of 180 and 250℃ respectively for 9 wt.% of Cu concentration. The sensor tends to saturate at 5.0 and 3.5% for H_2 and CO gases respectively. The XRD and SEM characterization techniques were employed to understand the possible reasons for the high performance of the sensor material with 9 wt.% of Cu. The study revealed that this sensor material shows extraordinarily promising properties for H_2 gas sensing application.
机译:本研究对Cu改性BaTiO_3颗粒对CO,H_2和LPG气体的气敏特性进行了系统评价。 BaTiO_3中的Cu浓度从1到11 wt。%系统地变化。在Cu浓度为9 wt%时,分别在180和250℃的较低最佳工作温度下获得了H_2的最高灵敏度因子(SF)以及CO气体的557最高灵敏度值。对于H_2和CO气体,传感器的饱和度分别为5.0%和3.5%。使用XRD和SEM表征技术来了解含9 wt。%Cu的传感器材料高性能的可能原因。研究表明,这种传感器材料对H_2气体传感应用显示出非常有希望的性能。

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