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A CASSCF-MRCI study of the electronic excited states of FCIO and FOCI

机译:CASSCF-MRCI研究FCIO和FOCI的电子激发态

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The potential energy curves for the low-lying excited states of FCIO and FOCI have been computed using the complete active space self-consistent field (CASSCF) with cc-pVTZ basis sets. The vertical excitation energies for the excited states were calculated using the multireference configuration interaction (MRCI) method with cc-pVTZ and cc-pVTZ + sp basis sets. The vertical excitation energies were also obtained using the EOM-CCSD (equation of motion-coupled-cluster single double) method with cc-pVTZ basis sets. Results show that Rydberg character is not present in the excited states studied here for both FCIO and FOCI. For FCIO, all the excited states studied are repulsive along the F-Cl coordinate, but some of the excited states are bound along the Cl-O coordinate. For FOCI, all the excited states studied are dissociative along both the F-O and O-Cl coordinates.
机译:FCIO和FOCI的低激发态的势能曲线已使用具有cc-pVTZ基集的完整有源空间自洽场(CASSCF)进行了计算。使用具有cc-pVTZ和cc-pVTZ + sp基集的多参考配置相互作用(MRCI)方法,计算了激发态的垂直激发能。垂直激励能量也使用带有cc-pVTZ基组的EOM-CCSD(运动耦合簇单重方程)方法获得。结果表明,此处研究的FCIO和FOCI的激发态均不存在里德伯格特性。对于FCIO,研究的所有激发态均沿F-Cl坐标排斥,但某些激发态沿Cl-O坐标结合。对于FOCI,研究的所有激发态都沿F-O和O-Cl坐标解离。

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