维氏硬度试验
材料科学
硼
钻石
化学键
结构稳定性
粘结长度
电子结构
金属
穆利肯种群分析
电荷密度
键能
结晶学
密度泛函理论
计算化学
化学
分子
晶体结构
冶金
微观结构
物理
有机化学
结构工程
工程类
量子力学
作者
Mengkui Li,Xiaofeng Fan,Weitao Zheng
标识
DOI:10.1088/0953-8984/25/42/425502
摘要
With first-principle calculations, we studied the structural stability and electronic properties of the BxCy compounds based on three kinds of phases including diamond-like, C20-like and B15-like phases. The C20-like structure B8C12 is found to be a new stable structure with relatively low formation energy in middle boron concentration and is expected to be synthesized experimentally. Combined with a microscopic model, the Vickers hardness of the different configurations of BxCy compounds is analyzed with the change of boron concentration. It is found that the hardness of the B-C system has a decreasing trend with the increase of boron concentration. In addition, all the structures have metallic properties, except B12C3 and B14C. With the analysis of Mulliken bond population and charge distribution, the bonds with high electron density and short bond length have an important contribution to the hardness in the B-C system, while the effect of metallicity to hardness can be ignored.
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