首页> 外文期刊>Journal of the Chemical Society, Dalton Transactions. Inorganic Chemistry >Periodic trends in the diatomic monoxides and monosulfides of the 3d transition metals
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Periodic trends in the diatomic monoxides and monosulfides of the 3d transition metals

机译:3d过渡金属的双原子一氧化碳和单硫化物的周期性趋势

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Non-local, density functional calculations have been performed on the ground and low-lying excited states of the 3d transition metal monoxide and monosulfide molecules. Periodic trends in properties such as bond lengths, bond energies, vibrational force constants and dipole moments are examined. The variations in the bond lengths and energies are compared to those in the monoxide and monosulfide solids. Analysis of the electronic structures of the molecules reveals the d-orbital splitting to be d(pi)> d(sigma)greater than or equal to d(delta) and shows the non-bonding role of the d(sigma) and d(delta) functions. This sequence mirrors that in the electronically related dichloride molecules and leads to similarities in the periodic trends with those in the solids. Systematic errors in the calculated bond energies and vibrational frequencies are identified. The successful use of a correctly parameterized ligand-field model is reported allowing quantitative reproduction of the 'd-d' spectra of the monoxide molecules and the prediction of band positions of unassigned transitions. [References: 33]
机译:已对3d过渡金属一氧化碳和单硫化物分子的基态和低激发态进行了非局部密度函数计算。研究了诸如粘结长度,粘结能,振动力常数和偶极矩等特性的周期性趋势。将键长和能量的变化与一氧化碳和一硫化物固体中的变化进行了比较。分子电子结构的分析表明,d-轨道分裂为d(pi)> d(sigma)大于或等于d(delta),并显示了d(sigma)和d(增量)功能。该序列反映了与电子相关的二氯化物分子中的序列,并导致与固体中的周期性趋势相似。确定计算的键能和振动频率中的系统误差。据报道,成功使用了正确参数化的配体场模型,可以定量再现一氧化碳分子的“ d-d”光谱,并预测未分配跃迁的能带位置。 [参考:33]

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