首页> 外文期刊>Journal of chemical theory and computation: JCTC >Quantitative Evaluation of Site Energies and Their Fluctuations of Pigments in the Fenna-Matthews-Olson Complex with an Efficient Method for Generating a Potential Energy Surface
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Quantitative Evaluation of Site Energies and Their Fluctuations of Pigments in the Fenna-Matthews-Olson Complex with an Efficient Method for Generating a Potential Energy Surface

机译:用一种有效的产生势能面的方法定量评估Fenna-Matthews-Olson复合物中的位能及其色素的波动

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摘要

We develop an efficient method to generate an accurate semiglobal potential energy surface of a molecule in condensed phases with low computational cost. We apply the method to the calculation of the site energies and their fluctuations of bacteriochlorophyll (BChl) a pigments in the Fenna-Matthews-Olson (FMO) complex using the density functional properly describing the ground and excited states of BChl a in solutions in our previous work (J. Phys. Chem. B 2014, 118, 10906-10918). The errors of the potential energies calculated from the present and QM/MM methods are small: similar to 1 kcal/mol for both the ground and excited states. The calculated site energies are in good agreement with the experimentally fitted results. The calculated spectral density also agrees with the experimentally available data. The spectral densities of BChl 2 and BChl 5 are much larger than those of the other five sites. The present method is expected to provide new insights into the efficient excitation energy transfer in light-harvesting antennas.
机译:我们开发了一种高效的方法,可以以较低的计算成本在凝聚相中生成分子的精确半全局势能面。我们使用密度泛函正确地描述了溶液中BChl a的基态和激发态,使用该方法来计算Fenna-Matthews-Olson(FMO)复合物中的细菌叶绿素(BChl)a颜料的位能及其波动。以前的工作(J. Phys。Chem。B 2014,118,10906-10918)。根据目前的方法和QM / MM方法计算出的势能误差很小:基态和激发态都类似于1 kcal / mol。计算出的位能与实验拟合的结果非常吻合。计算出的光谱密度也与实验可获得的数据一致。 BChl 2和BChl 5的光谱密度远大于其他五个位置的光谱密度。预期本方法将提供对光收集天线中有效激发能量转移的新见解。

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