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Link atom bond length effect in ONIOM excited state calculations

机译:ONIOM激发态计算中的链接原子键长效应

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We investigate how the choice of the link atom bond length affects an electronic transition energy calculation with the so-called our own N -layer integrated molecular orbital molecular mechanics (ONIOM) hybrid method. This follows our previous paper [M. Caricato, J. Chem. Phys. 131, 134105 (2009)], where we showed that ONIOM is able to accurately approximate electronic transition energies computed at a high level of theory such as the equation of motion coupled cluster singles and doubles (EOM-CCSD) method. In this study we show that the same guidelines used in ONIOM ground state calculations can also be followed in excited state calculations, and that the link atom bond length has little effect on the ONIOM energy when a sensible model system is chosen. We also suggest further guidelines for excited state calculations which can help in checking the effectiveness of the definition of the model system and controlling the noise in the calculation.
机译:我们研究连接原子键长的选择如何影响所谓的我们自己的N层集成分子轨道分子力学(ONIOM)混合方法的电子跃迁能量计算。这是根据我们之前的论文[M. Caricato,J.Chem。物理131,134105(2009)],其中我们证明了ONIOM能够准确地近似计算在较高理论水平下计算出的电子跃迁能量,例如,运动耦合簇单双峰方程(EOM-CCSD)方法。在这项研究中,我们表明,在ONIOM基态的计算中使用的相同准则还可以遵循在激发态的计算,并且该链路原子键长度对ONIOM能量几乎没有影响被选择的明智模型系统时。我们还建议了有关激发态计算的其他准则,这些准则可以帮助检查模型系统定义的有效性并控制计算中的噪声。

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