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Effects of crystal structures on gas sensing properties of nanocrystalline ITO thick films

机译:晶体结构对纳米ITO厚膜气敏特性的影响

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Two kinds of nanocrystalline indium tin oxide (ITO) powders with different crystal structures―rhombohedral and cubic―were prepared using a coprecipitation process through the control of pH of a mixing solution and aging time after coprecipitation. The two powders have the same particle size of 15 nm in diameter but different morphologies (spherical for rhombohedral and rectangular for cubic). The gaseous ethanol sensing characteristics of the sensors prepared by the two ITO powders were quite different. The sensitivity of rhombohedral ITO sensor was high compared to that of the cubic ITO sensor across all temperatures. The reason for this is explained through the viewpoint of the binding energy as shown in XPS measurement and the surface structure relating to the crystal structure.
机译:采用共沉淀法,通过控制混合溶液的pH值和共沉淀后的熟化时间,制备了两种晶体结构不同的纳米晶铟锡氧化物(ITO)粉末(菱形和立方)。两种粉末的粒径相同,直径均为15 nm,但形貌不同(菱形为球形,立方体为矩形)。由两种ITO粉末制备的传感器的气态乙醇感测特性差异很大。在所有温度下,菱形ITO传感器的灵敏度均高于立方ITO传感器。通过XPS测量中所示的结合能和与晶体结构有关的表面结构的观点来解释其原因。

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