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首页> 外文期刊>Advances in condensed matter physics >Vibrational Spectroscopy of Binary Titanium Borides: First-Principles and Experimental Studies
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Vibrational Spectroscopy of Binary Titanium Borides: First-Principles and Experimental Studies

机译:二元钛硼化物的振动光谱:第一原理和实验研究

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Vibrational dynamics of binary titanium borides is studied from first-principles. Polarized and unpolarized Raman spectra of TiB, TiB2, and Ti3B4 are reported along with the experimental spectra of commercial powder and bulk TiB2 containing less than 1?wt.% of impurity phases. The X-ray diffraction spectroscopy, applied for phase composition examination of both bulk and powder materials, identifies only the TiB2 phase. The simulated Raman spectra together with literature data support interpretation and refinement of experimental spectra which reveal components arising from titanium dioxide (TiO2) and amorphous boron carbide (B4C) impurity phases as well as graphitic carbon. These contaminations are the by-products of synthesis, consolidation, and sintering aids employed to fabricate powder and bulk titanium diboride.
机译:从第一原理研究二元钛硼化物的振动动力学。 据报道,TIB,TIB2和TI3B4的偏振和未经偏振的拉曼光谱以及含有少于1μl≤WT的商业粉末和散装TIB2的实验光谱。杂质相的%。 X射线衍射光谱施用于两种散装和粉末材料的相位成分检查,仅识别TIB2相。 模拟拉曼光谱与文献数据支持解释和改进的实验光谱,揭示由二氧化钛(TiO2)和无定形碳化硼(B4C)杂质相以及石墨碳产生的组分。 这些污染是用于制造粉末和散装二硼化物的合成,固结和烧结助剂的副产物。

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