首页> 外文期刊>Physical Review, B. Condensed Matter >SYSTEMATIC AB INITIO INVESTIGATION OF BARE BORON CLUSTERS - DETERMINATION OF THE GEOMETRY AND ELECTRONIC STRUCTURES OF B-N (N=2-14)
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SYSTEMATIC AB INITIO INVESTIGATION OF BARE BORON CLUSTERS - DETERMINATION OF THE GEOMETRY AND ELECTRONIC STRUCTURES OF B-N (N=2-14)

机译:裸硼团簇的系统性从头研究-B-N(N = 2-14)的几何和电子结构的确定

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Based on ab initio quantum-chemical methods, accurate calculations on small boron clusters B-n (n=2-14) were carried out to determine their electronic and geometric structures. The geometry optimization with a linear search of local minima on the potential-energy surface was performed using analytical gradients in the framework of the restricted Hartree-Fock self-consistent-held approach. Most of the final structures of the boron clusters (n>9) are composed of two fundamental units: either of hexagonal or of pentagonal pyramids. Proposing an ''Aufbau principle'' one can easily construct various highly stable boron species. The resulting quasiplanar and convex structures can be considered as fragments of planar surfaces and as segments of nanotubes or hollow spheres, respectively. [References: 66]
机译:基于从头算化学方法,对小硼团簇B-n(n = 2-14)进行了精确计算,以确定它们的电子和几何结构。在受限的Hartree-Fock自洽保持方法的框架内,使用解析梯度执行了对势能表面上的局部最小值进行线性搜索的几何优化。硼簇的大多数最终结构(n> 9)由两个基本单元组成:六边形或五边形金字塔。提出“ Aufbau原理”可以很容易地构建出各种高度稳定的硼物种。所得的准平面和凸结构可以分别视为平面的碎片和纳米管或空心球的片段。 [参考:66]

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