首页> 外文期刊>Vacuum: Technology Applications & Ion Physics: The International Journal & Abstracting Service for Vacuum Science & Technology >The structure and phase change of a molybdenum grid coated with silicon and carbon composite thin films annealed at high temperature
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The structure and phase change of a molybdenum grid coated with silicon and carbon composite thin films annealed at high temperature

机译:高温退火硅碳复合薄膜钼网格的结构和相变

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摘要

Si-C composite thin films were deposited onto molybdenum substrates by radio-frequency magnetron sputtering. In order to simulate the working conditions of a grid contaminated by the active electron emission substance BaO from the hot cathode of a pulse-controlled grid travelling-wave tubes (TWTs), BaO layers were chemically deposited on the surface of the Si-C films. The structure and phase changes of BaO/Si-C/Mo systems were investigated using Raman scattering and XRD analysis after annealing at temperatures from 973 to 1273 K. The results show that high temperature annealing leaves only the high work function materials, SiC (about 4.4 eV) and SiO2 (about 3.1 eV), remaining on the surface. The results are discussed in terms of chemical reactions believed to occur during annealing and the importance of these for electron suppression from grids in working TWT devices. (c) 2006 Elsevier Ltd. All rights reserved.
机译:通过射频磁控溅射将Si-C复合薄膜沉积到钼衬底上。为了模拟来自脉冲控制栅极行波管(TWT)的热阴极的被活性电子发射物质BaO污染的栅极的工作条件,BaO层化学沉积在Si-C膜的表面。在973至1273 K的温度下退火后,使用拉曼散射和XRD分析研究了BaO / Si-C / Mo系统的结构和相变。结果表明,高温退火仅留下高功函数材料SiC(约残留在表面上的水含量约为4.4 eV)和SiO2(约3.1 eV)。根据认为在退火过程中发生的化学反应以及这些反应对于工作的TWT装置中栅极电子抑制的重要性讨论了结果。 (c)2006 Elsevier Ltd.保留所有权利。

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