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Enhanced response characteristics of SnO_2-ZnO hetrostructures loaded with nanoscale catalyst clusters for methane gas detection

机译:负载纳米级催化剂簇的SnO_2-ZnO异质结构响应特性增强,可用于甲烷气体检测

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Methane is an important explosive gas, used extensively at the domestic and industrial sites. It is the main constituent of natural gas, which is the main fuel supplied to homes and industries including automobiles. Detection of trace level of methane gas is very important to avoid any accidental explosion due to its leakage and may cause loss of valuable human life and property. The present paper is focused on the development of new sensing material in the form of composites to improve sensitivity, selectivity and stability. Present work shows the enhanced response of SnO2-ZnO composite structures for methane sensing and further increases its sensing response by loading appropriate catalyst on the sensor surface keeping in view of Fermi energy control mechanism and spillover mechanism. A stable sensor response of 77-85 % was obtained for SnO2-ZnO-Pd sensor structure over a wider range of temperature (160-260℃).
机译:甲烷是一种重要的爆炸性气体,已在家庭和工业场所广泛使用。它是天然气的主要成分,天然气是提供给家庭和工业(包括汽车)的主要燃料。痕量甲烷气体的检测对于避免由于泄漏引起的任何意外爆炸非常重要,因为它可能会导致宝贵的生命和财产损失。本文致力于复合材料形式的新型传感材料的开发,以提高灵敏度,选择性和稳定性。目前的工作表明,SnO2-ZnO复合结构对甲烷感测的响应增强,并且通过在费米能量控制机制和溢出机制的考虑下在传感器表面上加载适当的催化剂,进一步提高了其感测响应。 SnO2-ZnO-Pd传感器结构在较宽的温度范围(160-260℃)下可获得77-85%的稳定传感器响应。

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