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高对称管状 Ta@B、Ta@B 和 Ta@B 作为 α-硼烷纳米管的前体,其中过渡金属原子线配位在其内部。

High-symmetry tubular Ta@B, Ta@B, and Ta@B as embryos of α-boronanotubes with a transition-metal wire coordinated inside.

机构信息

Institute of Molecular Science, Shanxi University, Taiyuan, 034000, China.

出版信息

Phys Chem Chem Phys. 2018 Oct 3;20(38):25009-25015. doi: 10.1039/c8cp04602f.

Abstract

Transition-metal doping leads to dramatic structural changes and results in novel bonding patterns in small boron clusters. Based on the experimentally derived mono-ring planar C9v Ta©B92- (1) and extensive first-principles theory calculations, we present herein the possibility of high-symmetry double-ring tubular D9d Ta@B183- (2) and C9v Ta2@B18 (3) and triple-ring tubular D9h Ta2@B27+ (4), which may serve as embryos of single-walled metalloboronanotube α-Ta3@B48(3,0) (5) wrapped up from the recently observed most stable free-standing boron α-sheet on a Ag(111) substrate with a transition-metal wire (-Ta-Ta-) coordinated inside. Detailed bonding analyses indicate that, with an effective dz2-dz2 overlap on the Ta-Ta dimer along the C9 molecular axis, both Ta2@B18 (3) and Ta2@B27+ (4) follow the universal bonding pattern of σ + π double delocalization with each Ta center conforming to the 18-electron rule, providing tubular aromaticity to these Ta-doped boron complexes with magnetically induced ring currents. The IR, Raman, and UV-vis spectra of 3 and 4 are computationally simulated to facilitate their future experimental characterization.

摘要

过渡金属掺杂会导致硼团簇的结构发生显著变化,并产生新的键合模式。基于实验得出的单核平面 C9v Ta©B92-(1)和广泛的第一性原理理论计算,我们在此提出了具有高对称性的双环管状 D9d Ta@B183-(2)和 C9v Ta2@B18(3)以及三环管状 D9h Ta2@B27+(4)的可能性,它们可能作为单壁金属硼烷纳米管α-Ta3@B48(3,0)(5)的前体,该管是由最近在 Ag(111) 衬底上观察到的最稳定的自由-standing 硼α-sheet 包裹而成,其中有一条过渡金属线(-Ta-Ta-)配位在里面。详细的键合分析表明,在 C9 分子轴上沿 Ta-Ta 二聚体的有效 dz2-dz2 重叠作用下,Ta2@B18(3)和 Ta2@B27+(4)都遵循σ+π 双重离域的通用键合模式,每个 Ta 中心都符合 18 电子规则,为这些 Ta 掺杂硼络合物提供了磁性诱导的环电流的管状芳香性。对 3 和 4 的 IR、Raman 和 UV-vis 光谱进行了计算模拟,以促进它们未来的实验表征。

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