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碳化硼的高级微观结构。

Advanced microstructure of boron carbide.

机构信息

Institute of Physics, University Duisburg-Essen, Duisburg, Germany.

出版信息

J Phys Condens Matter. 2012 Sep 26;24(38):385406. doi: 10.1088/0953-8984/24/38/385406. Epub 2012 Sep 3.

Abstract

The rhombohedral elementary cell of the complex boron carbide structure is composed of B(12) or B(11)C icosahedra and CBC, CBB or B□B (□, vacancy) linear arrangements, whose shares vary depending on the actual chemical compound. The evaluation of the IR phonon spectra of isotopically pure boron carbide yields the quantitative concentrations of these components within the homogeneity range. The structure formula of B(4.3)C at the carbon-rich limit of the homogeneity range is (B(11)C) (CBC)(0.91) (B□B)(0.09) (□, vacancy); and the actual structure formula of B(13)C(2) is (B(12))(0.5)(B(11)C)(0.5)(CBC)(0.65)(CBB)(0.16) (B□B)(0.19), and deviates fundamentally from (B(12))CBC, predicted by theory to be the energetically most favourable structure of boron carbide. In reality, it is the most distorted structure in the homogeneity range. The spectra of (nat)B(x)C make it evident that boron isotopes are not randomly distributed in the structure. However, doping with 2% silicon brings about a random distribution.

摘要

复杂硼化碳结构的菱面体基本单元由 B(12)或 B(11)C 二十面体和 CBC、CBB 或 B□B(□,空位)线性排列组成,其份额取决于实际的化学化合物。对同位素纯硼化碳的红外声子谱的评估得出了在均匀范围内这些成分的定量浓度。在均匀范围内富碳极限的 B(4.3)C 的结构式为(B(11)C)(CBC)(0.91)(B□B)(0.09)(□,空位);而实际的 B(13)C(2)的结构式为(B(12))(0.5)(B(11)C)(0.5)(CBC)(0.65)(CBB)(0.16)(B□B)(0.19),与理论预测的硼化碳最具能量优势的结构(B(12))CBC 有根本的偏离。实际上,它是均匀范围内最扭曲的结构。(nat)B(x)C 的光谱表明,硼同位素在结构中不是随机分布的。然而,掺杂 2%的硅会导致随机分布。

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