Venter Gerhard A, Raubenheimer Helgard G, Dillen Jan
Department of Chemistry and Polymer Science, University of Stellenbosch, Private Bag X1, Matieland 7602, South Africa.
J Phys Chem A. 2007 Aug 23;111(33):8193-201. doi: 10.1021/jp0732256. Epub 2007 Jul 28.
Model complexes of the general form M(CO)m(H)n(O3) (m = 1-5, n = 0 or 1) between ozone and the transition metals Ti to Cu were studied by density functional theory (DFT) calculations. The CDA charge decomposition method was used to analyze the interaction between the metal atom and the ozone ligand in terms of the traditional donation-back-donation mechanisms. Information about bond strengths was extracted from an analysis of the electron density in terms of the theory of atoms in molecules (AIM). The bonding in the ozone-metal complex was also studied within the NBO paradigm. Bond dissociation energies were calculated to be positive for all the complexes studied. Considering all the criteria employed in this study to analyze the interaction between the ozone and the transition metal, the Fe-complex is predicted to be the most stable, whereas the copper complex has the weakest metal-ozone interaction.
采用密度泛函理论(DFT)计算研究了臭氧与过渡金属Ti至Cu之间通式为M(CO)m(H)n(O3)(m = 1 - 5,n = 0或1)的模型配合物。运用CDA电荷分解方法,根据传统的给予-反馈给予机制分析金属原子与臭氧配体之间的相互作用。依据分子中的原子理论(AIM)对电子密度进行分析,从而获取有关键强度的信息。同时在自然键轨道(NBO)范式内研究了臭氧-金属配合物中的键合情况。计算得出所有研究的配合物的键解离能均为正值。综合本研究中用于分析臭氧与过渡金属之间相互作用的所有标准,预测铁配合物最为稳定,而铜配合物的金属-臭氧相互作用最弱。