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ⅥB族金属Cr, Mo和W晶格稳定性的密度泛函理论研究
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教育部博士点新教师基金(20070533118);国家自然科学基金(50471058, 50271085)


Density Functional Theory Study for Lattice Stability of Metal Cr, Mo and W of ⅥB Group
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    摘要:

    采用总能赝势平面波方法计算了ⅥB族过渡金属Cr,Mo和W不同晶体结构的晶格常数、总能和态密度,总能计算结果确定3种元素的晶格稳定性顺序为,其中bcc结构最稳定,与实验结果一致。电子结构的计算结果表明: Cr,Mo和W的s态电子极大向p态转化,部分向d态转化,增强了化学键的结合能力,形成了较高的晶体结合能,使得重金属的晶格更稳定

    Abstract:

    The lattice constants, total energies and densities of states of transition metals Cr, Mo and W in ⅥB group with different crystalline structures were calculated by the total energy pseudopotential plane-wave method. The results show that the order of lattice stability of Cr, Mo and W is , in which bcc structure is the most stable phase, agreeing with the experimental result. The results of electronic structure calculation show that most of the electrons in s state are transferred into p state and part of s state electrons are transferred into d state. These transferences of electrons from s state to p state or d state form stronger cohesion, higher cohesive energy and more stable lattice of heavy metals.

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陶辉锦,刘 玲,文杰斌,杨巧然.ⅥB族金属Cr, Mo和W晶格稳定性的密度泛函理论研究[J].稀有金属材料与工程,2011,40(5):839~843.[Tao Huijin, Liu Ling, Wen Jiebin, Yang Qiaoran. Density Functional Theory Study for Lattice Stability of Metal Cr, Mo and W of ⅥB Group[J]. Rare Metal Materials and Engineering,2011,40(5):839~843.]
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  • 收稿日期:2010-05-05
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