Ghanty Tapan K
Theoretical Chemistry Section, RC & CD Division, Chemistry Group, Bhabha Atomic Research Centre, Mumbai 400 085, India.
J Chem Phys. 2005 Aug 15;123(7):074323. doi: 10.1063/1.2000254.
The structure and the stability of a new class of insertion compounds of noble-gas atoms of the type AuNgX (Ng=Kr, Xe and X=F, OH) have been investigated theoretically through ab initio molecular-orbital calculations. All the species are found to have a linear structure with a noble-gas-noble-metal bond, the distance of which is comparable to covalent bond length except the AuKrOH system, for which it lies in between the covalent and van der Waals limits. The dissociation energies corresponding to the lowest-energy fragmentation products, AuX+Ng have been computed to be -166.2, -276.0, -194.4, and -257.6 kJ/mol for AuXeF, AuKrF, AuXeOH, and AuKrOH, respectively, at the MP2 level of theory. The respective barrier heights corresponding to the bent transition states (Au-Ng-X bending mode) have been calculated to be 119.1, 74.9, 160.7, and 141.6 kJ/mol. However, three of these species are found to be metastable in their respective potential-energy surface, and the dissociation energies corresponding to the Au+Ng+X fragments have been calculated to be 112.9, 3.0, and 18.7 kJ/mol for AuXeF, AuKrF, and AuXeOH, respectively, at the same level of theory. An analysis of the nature of interactions involved in the Au-Ng-X systems has been performed using Bader's topological theory of atoms-in-molecules (AIM). Geometric as well as energetic considerations along with AIM results suggest a partial covalent nature of Au-Ng bonds in these systems. This work might have important implications in the preparation of a new class of insertion compounds of noble-gas atoms containing noble-gas-noble-metal bond.
通过从头算分子轨道计算,从理论上研究了一类新型的AuNgX型(Ng = Kr、Xe,X = F、OH)稀有气体原子插入化合物的结构和稳定性。发现所有这些物种都具有带有稀有气体 - 贵金属键的线性结构,除了AuKrOH体系外,其键长与共价键长度相当,而在AuKrOH体系中,该键长介于共价键和范德华键极限之间。在MP2理论水平下,对应于最低能量碎片产物AuX + Ng的解离能,对于AuXeF、AuKrF、AuXeOH和AuKrOH分别计算为 - 166.2、-276.0、-194.4和 - 257.6 kJ/mol。对应于弯曲过渡态(Au - Ng - X弯曲模式)的各自势垒高度经计算分别为119.1、74.9、160.7和141.6 kJ/mol。然而,发现其中三个物种在其各自的势能面上是亚稳的,在相同理论水平下,对于AuXeF、AuKrF和AuXeOH,对应于Au + Ng + X碎片的解离能经计算分别为112.9、3.0和18.7 kJ/mol。利用Bader的分子中的原子拓扑理论(AIM)对Au - Ng - X体系中涉及的相互作用性质进行了分析。几何以及能量方面的考虑连同AIM结果表明这些体系中Au - Ng键具有部分共价性质。这项工作可能对制备一类含有稀有气体 - 贵金属键的新型稀有气体原子插入化合物具有重要意义。