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通过远红外光谱和理论确定铌掺杂硅团簇的结构

Structural determination of niobium-doped silicon clusters by far-infrared spectroscopy and theory.

作者信息

Li Xiaojun, Claes Pieterjan, Haertelt Marko, Lievens Peter, Janssens Ewald, Fielicke André

机构信息

The Key Laboratory for Surface Engineering and Remanufacturing in Shaanxi Province, School of Chemical Engineering, Xi'an University, Xi'an 710065, Shaanxi, P. R. China.

Laboratory of Solid State Physics and Magnetism, KU Leuven, B-3001 Leuven, Belgium.

出版信息

Phys Chem Chem Phys. 2016 Feb 17;18(8):6291-300. doi: 10.1039/c5cp07298k.

Abstract

In this work, the structures of cationic SinNb(+) (n = 4-12) clusters are determined using the combination of infrared multiple photon dissociation (IR-MPD) and density functional theory (DFT) calculations. The experimental IR-MPD spectra of the argon complexes of SinNb(+) are assigned by comparison to the calculated IR spectra of low-energy structures of SinNb(+) that are identified using the stochastic 'random kick' algorithm in conjunction with the BP86 GGA functional. It is found that the Nb dopant tends to bind in an apex position of the Sin framework for n = 4-9 and in surface positions with high coordination numbers for n = 10-12. For the larger doped clusters, it is suggested that multiple isomers coexist and contribute to the experimental spectra. The structural evolution of SinNb(+) clusters is similar to V-doped silicon clusters (J. Am. Chem. Soc., 2010, 132, 15589-15602), except for the largest size investigated (n = 12), since V takes an endohedral position in Si12V(+). The interaction with a Nb atom, with its partially unfilled 4d orbitals leads to a significant stability enhancement of the Sin framework as reflected, e.g. by high binding energies and large HOMO-LUMO gaps.

摘要

在这项工作中,通过结合红外多光子解离(IR-MPD)和密度泛函理论(DFT)计算,确定了阳离子SinNb(+)(n = 4 - 12)团簇的结构。通过将SinNb(+)的氩配合物的实验IR-MPD光谱与使用随机“随机踢”算法结合BP86广义梯度近似(GGA)泛函确定的SinNb(+)低能结构的计算红外光谱进行比较,对其进行了归属。结果发现,对于n = 4 - 9,Nb掺杂剂倾向于结合在Sin框架的顶点位置;对于n = 10 - 12,倾向于结合在高配位数的表面位置。对于较大的掺杂团簇,表明多种异构体共存并对实验光谱有贡献。SinNb(+)团簇的结构演化与V掺杂的硅团簇(《美国化学会志》,2010年,132卷,15589 - 15602页)相似,除了所研究的最大尺寸(n = 12),因为在Si12V(+)中V占据内包位置。与具有部分未填充4d轨道的Nb原子的相互作用导致Sin框架的稳定性显著增强,例如通过高结合能和大的最高占据分子轨道-最低未占据分子轨道能隙体现。

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