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Preparation and structure dependence of H2 sensing properties of palladium-coated tungsten oxide films

机译:钯包覆氧化钨薄膜的H2感测性能的制备及其结构依赖性

摘要

This study aims at revealing and explaining the influences of preparation condition on the structure and subsequent hydrogen (H2) sensing properties of palladium-(Pd-) coated tungsten oxide (WO3) films. The material structure was specified by grain size; porosity, surface roughness and thickness of the WO3 layer; and thicknesses of the Pd coating. The structural parameters are found to be tailorable in broad ranges by applying supersonic cluster beam deposition or magnetron sputtering technique operating at various substrate temperatures (50-550°C) and 20% Ar-80% O2 pressures (3-60 mTorr). The H2 sensing response of the sensors, and their response time (trespond) for hydrogenation and recovery time (trecover) for dehydrogenation are detected and found to be adjustable in a comprehensive manner. Results indicate that Pd/WO3 hydrogen sensors of high sensor response and short trespond and trecover are achievable if the WO3-based sensor is made to be highly disordered or contain non-crystalline clusters of size ≤5 nm, and have a porosity ≥14%. More details on possible mechanisms responsible for the findings are discussed.
机译:这项研究旨在揭示和解释制备条件对钯-(Pd-)涂层氧化钨(WO3)薄膜的结构和随后的氢(H2)传感性能的影响。材料结构由晶粒尺寸确定; WO3层的孔隙率,表面粗糙度和厚度;和钯涂层的厚度。通过应用超声簇束沉积或磁控溅射技术在各种衬底温度(50-550°C)和20%Ar-80%O2压力(3-60 mTorr)下运行,发现结构参数可在宽范围内调整。检测传感器的H2感应响应,以及它们对氢化的响应时间(响应)和对脱氢的恢复时间(响应),并且可以进行全面调整。结果表明,如果将基于WO3的传感器制造为高度无序或包含尺寸≤5nm的非晶簇并且孔隙率≥14%,则可以实现具有高传感器响应,短响应和伸长的Pd / WO3氢传感器。 。讨论了负责发现的可能机制的更多细节。

著录项

  • 作者

    Zhao M; Huang J; Ong CW;

  • 作者单位
  • 年度 2013
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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