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在插入化合物MNgF(M = Cu和Ag,Ng = Ar、Kr和Xe)中,稀有气体原子与贵金属原子之间的相互作用有多强?

How strong is the interaction between a noble gas atom and a noble metal atom in the insertion compounds MNgF (M=Cu and Ag, and Ng=Ar, Kr, and Xe)?

作者信息

Ghanty Tapan K

机构信息

Theoretical Chemistry Section, Chemistry Group, Bhabha Atomic Research Centre, Mumbai 400 085, India.

出版信息

J Chem Phys. 2006 Mar 28;124(12):124304. doi: 10.1063/1.2173991.

Abstract

Ab initio molecular orbital calculations have been carried out to investigate the structure and the stability of noble gas insertion compounds of the type MNgF (M=Cu and Ag, and Ng=Ar, Kr, and Xe) through second order Moller-Plesset perturbation method. All the species are found to have a linear structure with a noble gas-noble metal bond, the distance of which is closer to the respective covalent bond length in comparison with the relevant van der Waals limit. The dissociation energies corresponding to the lowest energy fragmentation products, MF+Ng, have been found to be in the range of -231 to -398 kJ/mol. The respective barrier heights pertinent to the bent transition states (M-Ng-F bending mode) are quite high for the CuXeF and AgXeF species, although for the Ar and Kr containing species the same are rather low. Nevertheless the M-Ng bond length in MNgF compounds reported here is the smallest M-Ng bond ever predicted through any experimental or theoretical investigation, indicating strongest M-Ng interaction. All these species (except AgArF) are found to be metastable in their respective potential energy surface, and the dissociation energies corresponding to the M+Ng+F fragments have been calculated to be 30.1-155.3 kJ/mol. Indeed, in the present work we have demonstrated that the noble metal-noble gas interaction strength in MNgF species (with M=Cu and Ag, and Ng=Kr and Xe) is much stronger than that in NgMF systems. Bader's [Atoms in molecules-A Quantum Theory (Oxford University Press, Oxford, 1990)] topological theory of atoms in molecules (AIM) has been employed to explore the nature of interactions involved in these systems. Geometric as well as energetic considerations along with AIM results suggest a partial covalent nature of M-Ng bonds in these systems. The present results strengthen our earlier work and further support the proposition on the possibility of experimental identification of this new class of insertion compounds of noble gas atoms containing noble gas-noble metal bond.

摘要

通过二阶莫雷尔-普莱塞特微扰方法进行了从头算分子轨道计算,以研究MNgF型(M = Cu和Ag,Ng = Ar、Kr和Xe)稀有气体插入化合物的结构和稳定性。发现所有物种都具有带稀有气体-贵金属键的线性结构,与相关范德华极限相比,该键的距离更接近各自的共价键长度。已发现对应于最低能量碎片产物MF + Ng的解离能在-231至-398 kJ/mol范围内。对于CuXeF和AgXeF物种,与弯曲过渡态(M-Ng-F弯曲模式)相关的各自势垒高度相当高,尽管对于含Ar和Kr的物种,势垒高度相当低。然而,此处报道的MNgF化合物中的M-Ng键长是通过任何实验或理论研究预测的最小M-Ng键,表明M-Ng相互作用最强。发现所有这些物种(除AgArF外)在其各自的势能面上是亚稳的,并且计算出对应于M + Ng + F碎片的解离能为30.1 - 155.3 kJ/mol。实际上,在本工作中我们已经证明,MNgF物种(M = Cu和Ag,Ng = Kr和Xe)中的贵金属-稀有气体相互作用强度比NgMF体系中的要强得多。已采用巴德的[分子中的原子——一种量子理论(牛津大学出版社,牛津,1990年)]分子中原子的拓扑理论(AIM)来探索这些体系中涉及的相互作用的性质。几何以及能量方面的考虑以及AIM结果表明这些体系中M-Ng键具有部分共价性质。目前的结果加强了我们早期的工作,并进一步支持了关于通过实验鉴定这类含稀有气体-贵金属键的稀有气体原子插入化合物可能性的主张。

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