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金属取代 Ti8C12 金属笼碳化物:作为组装材料的簇基构建块,朝向低反应性簇发展。

Metal-substituted Ti8C12 metallocarbohedrynes: toward less reactive clusters as building blocks of cluster-assembled materials.

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Phys Chem Chem Phys. 2012 Jul 21;14(27):9642-53. doi: 10.1039/c2cp40509a. Epub 2012 Jun 12.

Abstract

To form cluster-assembled materials, the clusters should have low reactivity and be characterized by a closed-shell electronic configuration with a large gap between the highest occupied and the lowest unoccupied molecular orbitals (HOMO-LUMO). Using spin-polarized density functional theory calculations, we investigate the M-substituted Ti(8)C(12) metallocarbohedrynes to search for less reactive clusters as building blocks for cluster-assembled materials (M = Be, Mg, Ca, Sr, Ba and Sc, Y). The selected atoms in the correct stoichiometry would produce a metallocarbohedryne that is isoelectronic with the Ti(8)C(12)(2+), which has a closed-shell electronic configuration and an enhanced HOMO-LUMO gap of 1.735 eV. According to our results, the HOMO-LUMO gaps of the M-substituted Ti(8)C(12) metallocarbohedrynes are in the range of 0.715-0.979 eV for the case of Be, Mg, Ca, Sr and Ba and in the range of 0.865-1.294 eV for the case of Sc and Y. Among all the M-substituted metallocarbohedrynes we consider here, one of the isomers of Ti(6)Sc(2)C(12) is not only energetically more favorable but also exhibits a larger HOMO-LUMO gap of 1.294 eV. This result indicates that the Ti(6)Sc(2)C(12)(4) metallocarbohedryne should be less reactive than the Ti(8)C(12) metallocarbohedryne which has a narrow HOMO-LUMO gap of 0.146 eV. Moreover, we show that the intercluster interaction between two individual Ti(6)Sc(2)C(12)(4) metallocarbohedrynes is relatively weak compared to the Ti(8)C(12) dimer.

摘要

为了形成团簇组装材料,团簇应该具有低反应性,并具有特征为最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)之间的大能隙的闭壳电子构型。使用自旋极化密度泛函理论计算,我们研究了 M 取代的 Ti(8)C(12)金属碳笼,以寻找作为团簇组装材料构建块的低反应性团簇(M = Be,Mg,Ca,Sr,Ba 和 Sc,Y)。正确化学计量的所选原子将产生与 Ti(8)C(12)(2+)等电子的金属碳笼,其具有闭壳电子构型和增强的 HOMO-LUMO 间隙为 1.735 eV。根据我们的结果,对于 Be,Mg,Ca,Sr 和 Ba 的情况,M 取代的 Ti(8)C(12)金属碳笼的 HOMO-LUMO 间隙在 0.715-0.979 eV 的范围内,对于 Sc 和 Y 的情况,其范围在 0.865-1.294 eV 之间。在我们考虑的所有 M 取代的金属碳笼中,Ti(6)Sc(2)C(12)的一种异构体不仅在能量上更有利,而且具有更大的 HOMO-LUMO 间隙为 1.294 eV。这一结果表明,Ti(6)Sc(2)C(12)(4)金属碳笼的反应性应该低于 HOMO-LUMO 间隙为 0.146 eV 的 Ti(8)C(12)金属碳笼。此外,我们表明,两个单独的 Ti(6)Sc(2)C(12)(4)金属碳笼之间的团簇间相互作用与 Ti(8)C(12)二聚体相比相对较弱。

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