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Microstructure and work function of dispenser cathode coatings: Effects on thermionic emission.

机译:分配器阴极涂层的微观结构和功函数:对热电子发射的影响。

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摘要

Dispenser cathodes emit electrons through thermionic emission and are a critical component of space-based and telecommunication devices. The emission of electrons is enhanced when coated with a refractory metal such as osmium (Os), osmium-ruthenium (Os-Ru), or iridium (Ir). In this work the microstructure, thermionic emission, and work function of thin film Os-Ru coatings were studied in order to relate microstructural properties and thermionic emission.;Os-Ru thin film coatings were prepared through magnetron sputtering and substrate biasing to produce films with an array of preferred orientations, or texture. The effect of texture on thermionic emission was studied in detail through closely-spaced diode testing, SEM imaging, and x-ray diffraction. Results indicated that there was a strong correlation with emission behavior and specific preferred orientations.;An ultra-high vacuum compatible Kelvin Probe was used to measure the work function of W-Os-Ru ternary alloy films to determine the effect W interdiffusion has on work function. The results indicated that a high work function alloy coating corresponded to low work function cathodes, as expected. It was inferred that a high work function alloy coating results in a low work function cathode because it aligns more closely with ionization energy of Ba. The results also proved that this method of evaluating dispenser cathode coatings can distinguish small variations in microstructure and composition and may be a beneficial tool in the development of improved dispenser cathode coatings.;A novel experimental apparatus was constructed to measure the work function of dispenser cathode coatings in-vacuo using the ultra-high vacuum Kelvin Probe. The apparatus is capable of activating cathodes at high temperature and measuring the work function at elevated temperature. The design of this apparatus allows for more rapid evaluation of dispenser cathode coatings.
机译:分配器阴极通过热电子发射来发射电子,并且是空基和电信设备的重要组成部分。当用难熔金属如(Os),钌(Os-Ru)或铱(Ir)涂覆时,电子的发射会增强。在这项工作中,研究了薄膜Os-Ru涂层的微观结构,热电子发射和功函数,以便将其微结构特性和热离子发射联系起来。首选方向或纹理的数组。通过紧密排列的二极管测试,SEM成像和X射线衍射,详细研究了纹理对热电子发射的影响。结果表明,它与发射行为和特定的优选取向密切相关。;使用超高真空兼容的开尔文探针测量W-Os-Ru三元合金薄膜的功函数,以确定W互扩散对功的影响功能。结果表明,如预期的那样,高功函数合金涂层对应于低功函数阴极。据推测,高功函数合金涂层导致低功函数阴极,因为它与Ba的电离能更紧密地对准。结果还证明,这种评估分配器阴极涂层的方法可以区分微观结构和组成的细微变化,并且可能是开发改进的分配器阴极涂层的有益工具。使用超高真空开尔文探针真空喷涂涂料。该设备能够在高温下激活阴极并在高温下测量功函。该设备的设计允许更快速地评估分配器阴极涂层。

著录项

  • 作者

    Swartzentruber, Phillip.;

  • 作者单位

    University of Kentucky.;

  • 授予单位 University of Kentucky.;
  • 学科 Materials science.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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