Department of Chemistry and Center for Theoretical Studies, Indian Institute of Technology Kharagpur, Kharagpur-721302, India.
Phys Chem Chem Phys. 2018 Jul 11;20(27):18491-18502. doi: 10.1039/c8cp02837k.
The internal isomerization, MNC ↔ MCN (M = Cu, Ag, Au), is investigated through quantum chemical computations. CuNC and AgNC are shown to be neither thermochemically nor kinetically stable against transformation to MCN. The free energy barrier (ΔG‡) for AuNC is somewhat considerable (7.1 kcal mol-1), indicating its viability, particularly at low temperature. Further, the Ng inserted analogues, MNgCN (M = Cu, Ag, Au; Ng = Xe, Rn) turn out to be thermochemically stable with respect to all possible dissociation channels but for two two-body dissociation channels, viz., MNgCN → Ng + MCN and MNgCN → Ng + MNC, which are connected to the internal isomerization processes, MNgCN → NgMCN and MNgCN → NgMNC, respectively. However, they are kinetically protected by substantial ΔG‡ values (11.8-15.4 kcal mol-1 for Cu, 9.8-13.6 kcal mol-1 for Ag, and 19.7-24.7 kcal mol-1 for Au). The pathways for such internal conversion are explored in detail. A thorough inspection of the bonding situation of the studied molecules, employing natural bond order, electron density, adaptive natural density partitioning, and energy decomposition analyses indicates that the M-Ng bonds in MNgCN and Ng-C bonds in AuNgCN can be represented as an electron-shared covalent bond. For the other Ng-C bonds, although an ionic description is better suited, the degree of covalent character is also substantial therein.
通过量子化学计算研究了内消旋化,MNC↔MCN(M=Cu、Ag、Au)。CuNC 和 AgNC 显示在热力学和动力学上都不稳定,无法转化为 MCN。AuNC 的自由能势垒(ΔG‡)相当可观(7.1 kcal mol-1),表明其在低温下具有可行性。此外,插入 Ng 的类似物,MNgCN(M=Cu、Ag、Au;Ng=Xe、Rn)在所有可能的离解通道方面都是热力学稳定的,但对于两个双体离解通道,即 MNgCN→Ng+MCN 和 MNgCN→Ng+MNC,它们分别与内消旋化过程 MNgCN→NgMCN 和 MNgCN→NgMNC 相关,是不稳定的。然而,它们的动力学稳定性由相当大的 ΔG‡值(Cu 为 11.8-15.4 kcal mol-1,Ag 为 9.8-13.6 kcal mol-1,Au 为 19.7-24.7 kcal mol-1)提供。详细探讨了这种内部转换的途径。通过自然键序、电子密度、自适应自然密度划分和能量分解分析对所研究分子的键合情况进行了彻底检查,表明 MNgCN 中的 M-Ng 键和 AuNgCN 中的 Ng-C 键可以表示为电子共享的共价键。对于其他 Ng-C 键,虽然离子描述更合适,但其中的共价特征程度也相当大。