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Order-disorder phase transition in CoPd thin films

机译:CoPd薄膜中的有序无序相变

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摘要

The thin films of a CoPd alloy in the equiatomic composition region are prepared by condensation at different substrate temperatures. The substrate temperature is varied from the liquid nitrogen temperature to +280 degrees C. At low substrate temperatures, the crystal structure of the condensed films is the single-crystal blocks of the hexagonal close-packed (hcp) phase. As the substrate temperature is further increased, the domains characterized in the initial state by the microdiffraction patterns in the form of a diffuse halo appear in the films, and these domains have a clear-cut boundary with the regions indicated by point reflections in the electron diffraction patterns. At substrate temperatures from +150 to 160 degrees C, the CoPd alloy films in the equiatomic composition region are fully amorphous. The given state is a polymorphic transformation of the martensitic type. It arises in the martensitic transformation of the low-temperature hcp phase to the high-temperature fcc phase.
机译:通过在不同的基板温度下进行缩合制备等原子组成区域内的CoPd合金薄膜。基板温度从液氮温度变化到+280摄氏度。在较低的基板温度下,冷凝膜的晶体结构是六方密堆积(hcp)相的单晶块。随着基板温度的进一步升高,在膜中出现以弥散晕轮形式的微衍射图案为特征的初始区域,这些区域与电子中点反射所表示的区域具有明确的边界。衍射图。在从+150到160摄氏度的基材温度下,等原子组成区域内的CoPd合金膜是完全非晶态的。给定状态是马氏体类型的多态转换。它出现在从低温hcp相到高温fcc相的马氏体转变中。

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