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Boron quasicrystals and boron nanotubes: Ab initio study of various B-96 isomers

机译:准晶体硼和硼纳米管:从头开始研究各种B-96异构体

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The rhombohedral unit cells of alpha -boron crystals and of hypothetical alpha -boron quasicrystals were investigated by applying ab initio quantum-chemical methods. The atomic decorations of such unit cells are generally based on a suitable arrangement of eight boron icosahedra, and thus the mechanism of their cohesion was simulated by relaxing a B-96 supercluster composed of icosahedral boron clusters located at the vertices of the rhombohedral unit cells. Also, several alternative structures of B-96 clusters were proposed and compared to the rhombohedral phases. To this end, total energies of those structures were computed on the basis of all-electron calculations at the Hartree-Fock self-consistent field level of theory using the standard STO3G basis set. Due to the large number of degrees of freedom, the geometries of all isomers were optimized under reasonable symmetry constraints, but using analytical gradient methods. The resulting total energies show that segments of nanotubes and quasiplanar sheets turn out to be more stable than the unit cells of alpha -boron (quasi) crystals, indicating new kinds of materials. (C) 2000 Academic Press. [References: 25]
机译:通过从头算量子化学方法研究了α-硼晶体和假设的α-硼准晶体的菱面体晶胞。此类晶胞的原子修饰通常基于八个二十面体硼的适当排列,因此,通过放宽由位于二十面体硼簇的菱形体单元的顶点构成的B-96超簇来模拟其内聚机理。此外,提出了B-96团簇的几种替代结构,并与菱形面相进行了比较。为此,使用标准STO3G基础集,在理论上的Hartree-Fock自洽场水平上,基于全电子计算,计算了这些结构的总能量。由于存在大量的自由度,因此所有异构体的几何结构都在合理的对称性约束下进行了优化,但是使用了解析梯度法。产生的总能量表明,纳米管和准平面片的片段比α-硼(准)晶体的晶胞更稳定,表明存在新型材料。 (C)2000年学术出版社。 [参考:25]

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