首页> 美国政府科技报告 >Structural Characterization and Gas Reactions of Small Metal Particles by High-Resolution TEM (Transmission Electron Microscopy) and TED (Transmission Electron Diffraction). Semiannual Technical Report January 1, 1985-June 30, 198
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Structural Characterization and Gas Reactions of Small Metal Particles by High-Resolution TEM (Transmission Electron Microscopy) and TED (Transmission Electron Diffraction). Semiannual Technical Report January 1, 1985-June 30, 198

机译:高分辨率TEm(透射电子显微镜)和TED(透射电子衍射)对小金属颗粒的结构表征和气体反应。半年度技术报告1985年1月1日至198年6月30日

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The interaction of 100 and 200 keV electron beams with amorphous alumina, titania, and aluminum nitride substrates and nanometer-size palladium particulate deposits was investigated for the two extreme cases of (1) large-area electron-beam flash-heating and (2) small-area high-intensity electron-beam irradiation. The former simulates a short-term heating effect with minimum electron irradiation exposure, the latter simulates high-dosage irradiation with minimum heating effect. All alumina and titania samples responded to the flash-heating treatment with significant recrystallization. However, the size, crystal structure, shape, and orientation of the grains depended on the type and thickness of the films and the thickness of the Pd deposit. High-dosage electron irradiation also readily crystallized the alumina substrate films but did not affect the titania films. The alumina recrystallization products were usually either all in the alpha phase, or they were a mixture of small grains in a number of low-temperature phases including gamma, delta, kappa, beta, theta-alumina. Palladium deposits reacted heavily with the alumina substrates during either treatment, but they were very little effected when supported on titania. Both treatments had the same, less prominent localized crystallization effect on aluminum nitride films.

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