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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Estimation of Electronic Coupling for Photoinduced Charge Separation and Charge Recombination Using the Fragment Charge Difference Method
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Estimation of Electronic Coupling for Photoinduced Charge Separation and Charge Recombination Using the Fragment Charge Difference Method

机译:使用片段电荷差法估算光耦合电荷分离和电荷复合的电子耦合

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Photoinduced electron transfer reactions play an important role in chemistry, biochemistry, and material sciences. Electronic coupling of donor and acceptor is a key parameter that controls the rate of charge separation and charge recombination processes. The fragment charge difference (FCD) method is extended to calculate the electronic couplings and diabatic energies for the photoinduced reactions. It is shown that FCD provides consistent values of the ET parameters for any 3-state model system. We compare the matrix elements obtained within the 2- and 3-state treatment for different situations and suggest how to check adiabatic states included in the diabatization procedure. Two examples demonstrate the use of the FCD method in combination with MS-CASPT2 calculations to derive the ET parameters.
机译:光诱导的电子转移反应在化学,生物化学和材料科学中起着重要作用。供体和受体的电子耦合是控制电荷分离和电荷重组过程速率的关键参数。扩展了碎片电荷差(FCD)方法来计算光诱导反应的电子耦合和非绝热能量。结果表明,FCD可为任何三态模型系统提供一致的ET参数值。我们比较了针对不同情况在2状态和3状态处理中获得的矩阵元素,并提出了如何检查包含在绝热程序中的绝热状态的建议。两个示例说明了将FCD方法与MS-CASPT2计算结合使用以得出ET参数的情况。

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