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Precipitates of MnSi Cubic Phase in Tetragonal Mn_4Si_7 Crystal

机译:四方Mn_4Si_7晶体中MnSi立方相的沉淀

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摘要

Higher manganese silicides (HMSs) exhibit interesting thermoelectric and optoelectronic properties. Development of HMS-based thermoelements and microthermopiles of different designs may meet a number of problems, which can be solved only when the real structure of crystals and thin layers on which they are based is established. We have applied scanning and transmission electron microscopy and electron diffraction to investigate HMS crystals of two types: single crystals grown from melt by the Bridgman method and microislands formed by reactive diffusion during manganese vapor deposition on silicon substrates. The exact phase composition of these materials is established: matrix HMS crystal belonging to tetragonal system (Mn_4Si_7 composition) and precipitates of cubic manganese monosilicide MnSi. The shape and sizes of precipitates are determined, the crystallographic relationships between the tetragonal and cubic phases are found, and the interface is investigated.
机译:高锰硅化物(HMS)具有有趣的热电和光电特性。基于HMS的热电元件和不同设计的微热电堆的开发可能会遇到许多问题,只有在建立晶体和它们所基于的薄层的真实结构时才能解决。我们已经应用扫描和透射电子显微镜以及电子衍射来研究两种类型的HMS晶体:通过Bridgman方法从熔体生长的单晶和在锰蒸镀到硅基板上的反应扩散形成的微岛。确定了这些材料的确切相组成:属于四方晶系的基质HMS晶体(Mn_4Si_7组成)和立方锰单硅化物MnSi的沉淀物。确定沉淀物的形状和大小,发现四方和立方相之间的晶体学关系,并研究界面。

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