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Excited-State Gradients in Polarizable QM/MM Models: An Induced Dipole Formulation

机译:可极化QM / MM型号的激发 - 状态梯度:诱导偶极配方

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Charge and structural relaxation of electronically excited states in embedded systems are strongly affected by the environment. It is known that the largest part of environment effects comes from electrostatics. However, polarization can also play a role by tuning the electronic and geometrical properties of the states, finally modifying the fluorescence. Here we present the formulation of analytical excited-state gradients within a polarizable QM/MM approach and their implementation within the ONIOM framework. A time-dependent DFT level of theory is used in combination with an induced dipole formulation of the polarizable embedding. The formation and relaxation of the bright excited state of an organic dye (DAPI) intercalated in a DNA pocket is used to quantify the role played by the mutual polarization between the QM subsystem and the embedding and also to investigate the onset of overpolarization, which is a known limit of the model with potentially detrimental effects. On the one hand, the results indicate the robustness of the QM-classical interface and, on the other hand, show the non-negligible effect of polarization between DAPI and a DNA pocket in determining the fluorescence properties of the embedded dye.
机译:嵌入式系统中电子激发态的电荷和结构弛豫受到环境的强烈影响。众所周知,环境影响的最大部分来自静电。然而,偏振也可以通过调节态的电子和几何性质,最终改变荧光来发挥作用。在这里,我们介绍了极化QM/MM方法中分析激发态梯度的公式,以及它们在ONIOM框架中的实现。结合极化嵌入的诱导偶极子公式,使用了与时间相关的DFT理论。嵌入DNA囊中的有机染料(DAPI)明亮激发态的形成和弛豫用于量化QM子系统和嵌入之间的相互极化所起的作用,也用于研究过极化的开始,这是具有潜在有害影响的模型的已知极限。一方面,结果表明QM经典界面的稳健性,另一方面,在确定嵌入染料的荧光性质时,DAPI和DNA口袋之间的偏振效应不可忽略。

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