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Electronic states and potential energy curves of molybdenum carbide and its ions

机译:碳化钼及其离子的电子态和势能曲线

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The potential energy curves and spectroscopic constants of the ground and 29 low-lying excited states of MoC with different spin and spatial symmetries within 48 000 cm(-1) have been investigated. We have used the complete active space multiconfiguration self-consistent field methodology, followed by multireference configuration interaction (MRCI) methods. Relativistic effects were considered with the aid of relativistic effective core potentials in conjunction with these methods. The results are in agreement with previous studies that determined the ground state as X (3)Sigma(-). At the MRCISD+Q level, the transition energies to the 1 (3)Delta and 4 (1)Delta states are 3430 and 8048 cm(-1), respectively, in fair agreement with the results obtained by DaBell [J. Chem. Phy. 114, 2938 (2001)], namely, 4003 and 7834 cm(-1), respectively. The three band systems located at 18 611, 20 700, and 22 520 cm(-1) observed by Brugh [J. Chem. Phy. 109, 7851 (1998)] were attributed to the excited 11 (3)Sigma(-), 14 (3)Pi, and 15 (1)Pi states respectively. At the MRCISD level, these states are 17 560, 20 836, and 20 952 cm(-1) above the ground state respectively. We have also identified a (3)Pi state lying 14 309 cm(-1) above the ground state. The ground states of the molecular ions are predicted to be (4)Sigma(-) and (2)Delta for MoC- and MoC+, respectively. (c) 2006 American Institute of Physics.
机译:MoC在48 000 cm(-1)内具有不同的自旋和空间对称性的MoC的地势和29个低洼激发态的势能曲线和光谱常数已得到研究。我们使用了完整的活动空间多配置自洽字段方法,然后使用了多引用配置交互(MRCI)方法。相对论有效核心潜力结合这些方法考虑了相对论效应。结果与先前的研究一致,该研究确定基态为X(3)Sigma(-)。在MRCISD + Q级别,到1(3)Delta和4(1)Delta状态的跃迁能量分别为3430和8048 cm(-1),与DaBell获得的结果完全吻合[J. Chem。,2006,38,1959]。化学y 114,2938(2001)],分别是4003和7834 cm(-1)。 Brugh观察到的三个波段系统分别位于18 611、20 700和22 520 cm(-1)[J.化学y 109,7851(1998)]分别归因于激发的11(3)Sigma(-),14(3)Pi和15(1)Pi状态。在MRCISD级别上,这些状态分别比基态高17 560、20 836和20 952 cm(-1)。我们还确定了一个(3)Pi态,位于基态上方14 309 cm(-1)。预测MoC-和MoC +的分子离子的基态分别为(4)Sigma(-)和(2)Delta。 (c)2006年美国物理研究所。

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