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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Polarizable QM/MM Multiconfiguration Self-Consistent Field Approach with State-Specific Corrections: Environment Effects on Cytosine Absorption Spectrum
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Polarizable QM/MM Multiconfiguration Self-Consistent Field Approach with State-Specific Corrections: Environment Effects on Cytosine Absorption Spectrum

机译:具有状态特定校正的可极化QM / MM多配置自洽场方法:环境对胞嘧啶吸收光谱的影响

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摘要

We present the formulation and implementation of a polarizable quantum mechanics/molecular mechanics (QM/MM) strategy to describe environment effects in multiconfiguration self-consistent field calculations. The strategy is applied to the calculation of the vertical absorption spectrum of cytosine in water. In our approach, mutual polarization of the solute and the solvent is solved self-consistently at the complete-active-space self-consistent-field (CASSCF) level, and the resulting set of charges and dipoles is used to calculate vertical excitation energies using the complete-active-space second-order perturbative (CASPT2) approach and its multistate (MS-CASPT2) variant. In order to treat multiple excited states, we converge the solvent polarization with respect to the state-averaged density of the solute. In order to obtain the final energies, however, we introduce a state-specific correction, where the solvent polarization is recomputed with the density of each state, and demonstrate that this correction brings the excitation energies closer to the values obtained with state-optimized orbitals. Comparison with PCM and nonpolarizable QM/MM calculations shows the importance of specific solute-solvent interactions and environment polarization in describing experiments. Overall, the calculated excitations for the pi -> pi* states in water show good agreement with the experimental spectrum, whereas the n -> pi* appear at energies above 6 eV, approximately 1 eV higher than in the gas phase. Beyond solvents, the new method will allow studying the impact of heterogeneous biological environments in multiple excited states, as well as the treatment of multichromophoric systems where charge transfer and exciton states play important roles.
机译:我们提出可极化的量子力学/分子力学(QM / MM)策略的描述和实现,以描述多配置自洽场计算中的环境效应。该策略可用于计算水中胞嘧啶的垂直吸收光谱。在我们的方法中,溶质和溶剂的相互极化在完全活性空间自洽场(CASSCF)级别上自洽地求解,并且使用所得的电荷和偶极子集来计算垂直激发能,方法是完整活动空间二阶微扰(CASPT2)方法及其多状态(MS-CASPT2)变体。为了处理多个激发态,我们相对于溶质的状态平均密度收敛了溶剂极化。但是,为了获得最终能量,我们引入了特定于状态的校正,其中使用每种状态的密度重新计算了溶剂的极化,并证明了这种校正使激发能更接近于通过状态优化的轨道获得的值。与PCM和不可极化的QM / MM计算的比较表明,在描述实验时特定溶质-溶剂相互作用和环境极化的重要性。总的来说,水中pi-> pi *状态的计算激发与实验光谱显示出很好的一致性,而n-> pi *出现在高于6 eV的能量处,比气相高约1 eV。除了溶剂之外,新方法还将允许研究异质生物环境在多种激发态下的影响,以及在电荷转移和激子态起重要作用的多发色系统的处理方面。

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