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Ab initio molecular orbital study of ground and low-lying electronic states of CoCN

机译:CoCN的基态和低电子态的从头算分子轨道研究

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摘要

The ground and low-lying excited states of CoCN have been studied by ab initio multireference single and double excitation configuration interaction (MR-SDCI) calculations with Davidson's correction Q and Cowan-Griffin's relativistic corrections. The electronic ground state of CoCN is (3)Phi(i) and the equilibrium geometry is linear with bond lengths of r(e)(Co-C)=1.8540 A and r(e)(C-N)=1.1677 A, substantially different from the experimentally derived values of r(0)(Co-C)=1.8827(7) A and r(0)(C-N)=1.1313(10) A. The first excited state is (3)Delta(i), separated from the ground state by 727 cm(-1). Larger dynamical electron correlation energy for the low-spin (3)Phi state than for the high-spin (5)Phi state makes the (3)Phi state to be the ground state, which is discussed in terms of the differences in natural orbitals. A new spin-orbit interaction scheme between the X (3)Phi(i) and 1 (3)Delta(i) states is proposed.
机译:已通过戴维森校正Q和Cowan-Griffin相对论校正的从头算多参考单和双激发配置相互作用(MR-SDCI)计算研究了CoCN的基态和低激发态。 CoCN的电子基态为(3)Phi(i),平衡几何形状与r(e)(Co-C)= 1.8540 A和r(e)(CN)= 1.1677 A的键长成线性关系从r(0)(Co-C)= 1.8827(7)A和r(0)(CN)= 1.1313(10)A的实验推导值中得出。第一激发态为(3)Delta(i),分离离基态727 cm(-1)。低旋转(3)Phi态比高旋转(5)Phi态更大的动态电子相关能使(3)Phi态成为基态,这是根据自然轨道的差异进行讨论的。提出了X(3)Phi(i)和1(3)Delta(i)状态之间的一种新的自旋轨道相互作用方案。

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