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Valence electron structure and bonding features of RuB2 and OSB2: The empirical electron theory calculations 被引量:4
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作者 LUO XiaoGuang, LI JinPing, HU Ping & DONG ShanLiang Center for Composite Materials, Harbin Institute of Technology, Harbin 150001, China 《Science China(Technological Sciences)》 SCIE EI CAS 2010年第7期1877-1885,共9页
The valence electron structure (VES) of RuB2 and OsB2 were calculated by the empirical electron theory (EET) of solids and molecules and compared with the results derived from the first-principles calculations. The di... The valence electron structure (VES) of RuB2 and OsB2 were calculated by the empirical electron theory (EET) of solids and molecules and compared with the results derived from the first-principles calculations. The distributions of covalent electrons in different bonds indicate that B-B and B-Me have remarkably covalent bonding characters. Lattice electrons cruising around Me-Me layers are found to have great influences on electronic conductivity and high temperature plasticity. The ultra-high values of elastic constant Cn in the two compounds originate from close-packed covalent bonding along the c axis. Uneven bond strengths and distributions of covalent bonds, especially for B-Afe bonds, yield significant anisotropy. Low ratios of lattice electrons to covalent electrons suggest the intrinsic embrittlement in crystals. The fact that the calculated cohesive energies well agree with experimental results demonstrates the good suitability of the EET calculations in estimating cohesive energy for transition-metal borides. 展开更多
关键词 empirical ELECTRON theory (EET) of solid and molecules VALENCE ELECTRON structure (VES) COHESIVE energy anisotropy DIBORIDES of ruthenium and OSMIUM (RuB2 and osb2)
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基于第一性原理计算OsB_2的点阵动力学
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作者 汪月琴 孟影 +1 位作者 严少平 邵继红 《安徽大学学报(自然科学版)》 CAS 北大核心 2011年第3期48-52,共5页
利用基于密度泛函理论平面波赝势法的第一性原理计算,研究过渡金属化合物OsB2的点阵动力学.结果表明所有的带心光学声子模对应的原子都沿c轴方向振动,低频拉曼活性模式由重原子Os运动产生,重原子Os对电声耦合作用的贡献最大,而总的电声... 利用基于密度泛函理论平面波赝势法的第一性原理计算,研究过渡金属化合物OsB2的点阵动力学.结果表明所有的带心光学声子模对应的原子都沿c轴方向振动,低频拉曼活性模式由重原子Os运动产生,重原子Os对电声耦合作用的贡献最大,而总的电声耦合作用较弱,说明OsB2是弱的电声耦合超导体. 展开更多
关键词 osb2 第一性原理 点阵动力学 电声耦合超导体
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