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From Two‐ to Three‐Dimensional Structures of a Supertetrahedral Boran Using Density Functional Calculations

机译:使用密度泛函计算的超四面体硼烷的二维结构到三维结构

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摘要

With help of the DFT calculations and imposing of periodic boundary conditions the geometrical and electronic structures were investigated of two‐ and three‐dimensional boron systems designed on the basis of graphane and diamond lattices in which carbons were replaced with boron tetrahedrons. The consequent studies of two‐ and three‐layer systems resulted in the construction of a three‐dimensional supertetrahedral borane crystal structure. The two‐dimensional supertetrahedral borane structures with less than seven layers are dynamically unstable. At the same time the three‐dimensional superborane systems were found to be dynamically stable. Lack of the forbidden electronic zone for the studied boron systems testifies that these structures can behave as good conductors. The low density of the supertetrahedral borane crystal structures (0.9 g cm−3) is close to that of water, which offers the perspective for their application as aerospace and cosmic materials.
机译:借助DFT计算并施加周期性边界条件,研究了基于石墨烷和金刚石晶格设计的二维和三维硼系统的几何和电子结构,其中碳被四面体硼替代。对两层和三层系统的后续研究导致了三维超四面体硼烷晶体结构的构建。少于七个层的二维超四面体硼烷结构是动态不稳定的。同时,发现三维超硼烷系统是动态稳定的。所研究的硼系统缺少禁带电子区,这证明这些结构可以充当良好的导体。超四面体硼烷晶体结构的低密度(0.9 g cm -3 )接近水,这为它们在航空航天和宇宙材料中的应用提供了前景。

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