Department of Chemistry and Mathematical Modeling and Computational Science Center (LMCC), Katholieke Universiteit Leuven, Leuven, Belgium.
J Phys Chem A. 2011 Apr 21;115(15):3523-35. doi: 10.1021/jp110758p. Epub 2011 Mar 29.
Geometric and electronic structures, vibrational properties, and relative stabilities of niobium clusters Nb(n), n = 7-12, are studied using both DFT (BPW91 and M06 functionals) and CCSD(T) calculations with the cc-pVnZ-PP basis set. In each cluster, various lower-lying states are very close in energy in such a way that the ground state cannot be unambiguously established by DFT computations. Nb clusters tend to prefer the lowest possible spin state as the ground state, except for Nb(12) ((3)A(g)). The optimal structure of the cluster at a certain size does not simply grow from that of the smaller one by adding an atom randomly. Instead, the Nb clusters prefer a close-packed growth behavior. Nb(10) has a spherically aromatic character, high chemical hardness and large HOMO-LUMO gap. Electron affinities, ionization energies, binding energy per atom, and the stepwise dissociation energies are evaluated. Energetic properties exhibit odd-even oscillations. Comparison with experimental values shows that both BPW91 and M06 functionals are reliable in predicting the EA and IE values, but the BPW91 is deficient in predicting the binding and dissociation energies. We re-examine in particular the experimental far IR spectra previously recorded using the IR-MPD and free electron laser spectrometric techniques and propose novel assignments for Nb(7) and Nb(9) systems. The IR spectra of the anions are also predicted.
使用 DFT(BPW91 和 M06 泛函)和 CCSD(T)计算与 cc-pVnZ-PP 基组研究了铌团簇 Nb(n),n = 7-12 的几何和电子结构、振动特性和相对稳定性。在每个团簇中,各种较低能态的能量非常接近,以至于 DFT 计算无法明确确定基态。铌团簇倾向于将尽可能低的自旋态作为基态,除了 Nb(12) ((3)A(g))。在一定尺寸下,团簇的最佳结构不是通过随机添加原子从较小的结构简单地增长而来。相反,铌团簇更喜欢紧密堆积的生长行为。Nb(10)具有球形芳香特征、高化学硬度和大 HOMO-LUMO 间隙。评估了电子亲和能、电离能、每个原子的结合能和逐步离解能。能量性质表现出奇偶振荡。与实验值的比较表明,BPW91 和 M06 泛函都可靠地预测 EA 和 IE 值,但 BPW91 在预测结合能和离解能方面存在不足。我们特别重新检查了先前使用 IR-MPD 和自由电子激光光谱技术记录的实验远红外光谱,并对 Nb(7)和 Nb(9)系统提出了新的分配。还预测了阴离子的红外光谱。