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硼富勒烯的跨越原理:B112 的结构与稳定性的理论研究。

The leapfrog principle for boron fullerenes: a theoretical study of structure and stability of B112.

机构信息

Department of Chemistry and INPAC-Institute for Nanoscale Physics and Chemistry, Katholieke Universiteit Leuven, Celestijnenlaan 200F, B-3001 Leuven, Belgium.

出版信息

Phys Chem Chem Phys. 2011 Apr 28;13(16):7524-33. doi: 10.1039/c0cp02130j. Epub 2011 Mar 18.

Abstract

Two leapfrog isomers of a B(112) boron fullerene are constructed from small C(28) fullerenes (T(d) and D(2) symmetries) by the leapfrog transformation combined with omnicapping of the new hexagons. Their electronic structure is analyzed using the density functional theory at the B3LYP/SVP and BHLYP/SVP levels. Both isomers are characterized as minima on the potential energy hypersurface with a HOMO-LUMO gap at B3LYP/SVP of 1.7 eV and 1.6 eV (3.1 and 3.0 eV at BHLYP/SVP), respectively. The optimized structure of the helical D(2)-leapfrog is asymmetric, due to radial displacements of the capping atoms. The computed cohesive energies amount to -4.2 eV (∼0.04 eV lower than B(80)). The B(112) isomers are isoelectronic to T(d)-C(84) and D(2)-C(84), and HOMO and LUMO orbitals in both isomers closely resemble those of their C(84) homologues. Energetic stability of leapfrog boron fullerenes depends on the isolation of empty hexagon criterion, which is defined by the empty hexagon index based on the total number of empty hexagon pairs and empty hexagon-pentagon fused pairs. The switch of the cap atom to the nearest or farthest empty hexagon destabilizes the cage by 1.6 and 2.7 eV, respectively. The destabilization becomes more enhanced in non-leapfrog structures wherein more caps are displaced.

摘要

两个 B(112) 硼富勒烯的蛙跳异构体是由小的 C(28) 富勒烯(T(d) 和 D(2) 对称性)通过蛙跳变换结合新六边形的全包合构建的。它们的电子结构使用密度泛函理论在 B3LYP/SVP 和 BHLYP/SVP 水平上进行了分析。两种异构体在势能超曲面上都被表征为极小值,在 B3LYP/SVP 下的 HOMO-LUMO 能隙为 1.7 eV 和 1.6 eV(在 BHLYP/SVP 下分别为 3.1 eV 和 3.0 eV)。由于封盖原子的径向位移,螺旋 D(2)-蛙跳的优化结构是不对称的。计算得到的结合能为-4.2 eV(比 B(80) 低约 0.04 eV)。B(112) 异构体与 T(d)-C(84)和 D(2)-C(84)等电子,并且两种异构体中的 HOMO 和 LUMO 轨道与它们的 C(84)同系物非常相似。蛙跳硼富勒烯的能量稳定性取决于空六元环判据的隔离,该判据由基于空六元环对总数的空六元环指数和空六元环-五元环融合对定义。帽原子向最近或最远的空六元环的转换分别使笼体不稳定 1.6 eV 和 2.7 eV。在非蛙跳结构中,帽原子的位移更多,使不稳定性增强。

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