Pei Gerui, Shu Cong-Cong, Li Mengyang, Sun Zhong-Ming, Yang Tao
Ministry of Education Key Laboratory for Non-Equilibrium Synthesis and Modulation of Condensed Matter, Shaanxi Province Key Laboratory of Advanced Functional Materials and Mesoscopic Physics, School of Physics, Xi'an Jiaotong University, Xi'an 710049, Shaanxi, China.
Phys Chem Chem Phys. 2021 Sep 14;23(34):18640-18646. doi: 10.1039/d1cp01592c. Epub 2021 Aug 18.
Density functional theory (DFT) calculations were employed to study the stabilities, electronic structures, and vibrational and bonding properties of dianionic pentacarbonyls [TM(CO)] (TM = Cr, Mo, W). A D symmetry structure with singlet state was found to be the ground state and C-O stretching vibrational frequencies range from 1719 to 1766 cm, which are in excellent agreement with the experimental observations. The calculation results on bond dissociation energy for the CO loss revealed their stabilities. By employing energy decomposition analysis (EDA), the bonding nature between TM and (CO) was disclosed, in which the [TM(d)]→(CO)π backdonations contribute largely to the orbital interactions while σ donation from the lone pair of CO to metal contributes moderately. Compared with those in the isoelectronic neutral hexacarbonyls TM(CO), the π backdonations are obviously larger in [TM(CO)] because there are two extra electrons in (n- 1)d AOs of the center transition metal.
采用密度泛函理论(DFT)计算研究了双阴离子五羰基化合物[TM(CO)](TM = Cr、Mo、W)的稳定性、电子结构以及振动和键合性质。发现具有单重态的D对称结构为基态,C - O伸缩振动频率范围为1719至1766 cm,这与实验观测结果高度吻合。关于CO损失的键解离能的计算结果揭示了它们的稳定性。通过能量分解分析(EDA),揭示了TM与(CO)之间的键合本质,其中[TM(d)]→(CO)π反馈π键对轨道相互作用贡献很大,而CO孤对电子向金属的σ给体作用贡献适中。与等电子中性六羰基化合物TM(CO)相比,[TM(CO)]中的π反馈π键明显更大,因为中心过渡金属的(n - 1)d原子轨道中有两个额外电子。