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We investigate the electronic structure, chemical bonding and elastic properties of the hexagonal aluminum carbonitride, Al5C3N, by ab initio calculations. Al5C3N is a semiconductor with a narrow indirect gap of 0.81 eV. The valence bands below the Fermi level (EF) originate from the hybridized Al p-C p and Al p-N p states. The calculated bulk and Young's moduli are 201 GPa and 292 GPa, which are slightly lower than those of Ti3SiC2. The values of the bulk-to-shear-modulus and bulk-modulus-to-c44 are 1.73 and 1.97, respectively, which are higher than those of Ti2AlC and Ti2AlN, indicating that Al5C3N is a ductile ceramic. 相似文献
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采用基于密度泛函理论的第一性原理计算方法研究了钙钛矿结构的BaHfO3和SrHfO3的基态性质,包括优化后的晶格常数、弹性常数、体弹性模量、剪切模量、态密度、能带结构和电荷密度.计算结果表明BaHfO3和SrHfO3具有比较大的体弹性模量,它们都是间接带隙的半导体材料,Ba或Sr原子与HfO3基团之间形成的化学键主要是离子键,而Hf原子与O原子之间形成的主要是共价键.
关键词:
第一性原理
钙钛矿结构
体弹性模量
价键 相似文献
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