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双原子带电氟化物MF(+/-)(M = 钪、钛、钒、铬和锰)的第一性原理研究

First principles study of the diatomic charged fluorides MF(+/-), M=Sc, Ti, V, Cr, and Mn.

作者信息

Kardahakis Stavros, Koukounas Constantine, Mavridis Aristides

机构信息

Laboratory of Physical Chemistry, Department of Chemistry, National and Kapodistrian University of Athens, P.O. Box 64004, 15710 Zografou, Athens, Greece.

出版信息

J Chem Phys. 2005 Feb 1;122(5):54312. doi: 10.1063/1.1834912.

DOI:10.1063/1.1834912
PMID:15740327
Abstract

Employing multireference configuration interaction and coupled-cluster methods in conjunction with quantitative basis sets, we have explored the electronic structure of the charged diatomic fluorides MF(+/-), where M=Sc, Ti, V, Cr, and Mn. In addition, and in order to complete our recently published work on the neutral diatomic fluorides MF, M=Ti-Mn, we have also examined the ground (X (1)Sigma(+)) and the first excited state (alpha (3)Delta) of neutral ScF. For the entire anionic MF(-) series and the cations ScF(+), VF(+), and MnF(+), no experimental or theoretical results of any kind have been reported so far in the literature. For the charged MF(+/-) sequence we have investigated a total of 43=29(MF(+))+14(MF(-)) states, reporting potential energy curves, energetics, and common spectroscopic parameters. Two are the most interesting conclusions of the present work. (a) The Coulombic binding character of MF(+) cations, i.e., the conformity of their equilibrium description to M(2+)F(-) and (b) the atypical bonding of the MF(-) anions and their surprisingly high dissociation energies (up to 85 kcal/mol for the X (2)Delta state of ScF(-)). Considering the complexities of these chemically "simple" systems, our results on ScF, TiF(+), and CrF(+) are in very good agreement with the limited experimental findings.

摘要

我们采用多参考组态相互作用和耦合簇方法,并结合定量基组,研究了带电双原子氟化物MF(+/-)的电子结构,其中M = Sc、Ti、V、Cr和Mn。此外,为了完善我们最近发表的关于中性双原子氟化物MF(M = Ti - Mn)的工作,我们还研究了中性ScF的基态(X (1)Σ(+))和第一激发态(α (3)Δ)。对于整个阴离子MF(-)系列以及阳离子ScF(+)、VF(+)和MnF(+),目前文献中尚未报道任何实验或理论结果。对于带电的MF(+/-)序列,我们总共研究了43 = 29(MF(+))+ 14(MF(-))个态,报告了势能曲线、能量学和常见光谱参数。本文工作有两个最有趣的结论。(a) MF(+)阳离子的库仑结合特性,即其平衡描述与M(2+)F(-)的一致性;(b) MF(-)阴离子的非典型键合及其令人惊讶的高离解能(对于ScF(-)的X (2)Δ态高达85 kcal/mol)。考虑到这些化学上“简单”系统的复杂性,我们关于ScF、TiF(+)和CrF(+)的结果与有限的实验发现非常吻合。

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