首页> 外文期刊>The Journal of Chemical Physics >Theoretical study of the mechanism of electron transfer at photosynthetic reaction centers. I. Singlet excited states of free base porphin
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Theoretical study of the mechanism of electron transfer at photosynthetic reaction centers. I. Singlet excited states of free base porphin

机译:光合作用中心电子转移机理的理论研究。 I.游离基卟啉的单重态

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Free base prophin is a key unit in the electron transfer reaction at photosynthetic reaction centers. For the electron transfer reaction, the transfer integral of the rate constant depends strongly on the quality of the wave functions of porphin-based chromophores. Therefore, we need a stable method for calculating the wave functions of optically allowed excited states of the porphin. We developed such a method and verified its stability by calculating the wave functions for an ethylene molecule. We confirmed that the optically allowed excited states required the entire amount of valence molecular orbitals for the active space to adequately describe the wave function with molecular in-out polarization. We applied our calculation method to investigate the wave function of free base prophin. Our ab initio calculation used 4-31 G plus d polarization functions for the carbon and nitrogen atoms, and Rydberg 2d basis functions on the center of each pyrrol ring simultaneously. We also proposed an assignment for the controversial B and N bands. This assignment is reasonably consistent with experimental data within 0.36 eV for Q and B bands, and 0.75 eV for N bands. The reproduction accuracy of the lower excitation spectra up to B band confirms the reliability of the transfer integral part to calculate the rate constants of the electron transfer reaction at photosynthetic reaction centers.
机译:游离碱丙烯是光合作用中心电子转移反应的关键单元。对于电子转移反应,速率常数的转移积分在很大程度上取决于基于卟啉的生色团的波函数的质量。因此,我们需要一种稳定的方法来计算卟啉的光学允许激发态的波函数。我们开发了这种方法,并通过计算乙烯分子的波函数验证了其稳定性。我们确认,光学允许的激发态需要整个活性空间的价态分子轨道的全部量,以充分描述分子进出极化的波函数。我们应用我们的计算方法来研究游离碱丙烯的波函数。我们的从头计算使用了碳原子和氮原子的4-31 G plus d极化函数,同时在每个吡咯环的中心使用Rydberg 2d基函数。我们还提出了有争议的B波段和N波段的任务。该分配与Q和B波段在0.36 eV之内,而N波段在0.75 eV之内的实验数据合理地一致。较低激发光谱直至B波段的再现精度证实了转移积分部分在光合作用反应中心计算电子转移反应速率常数的可靠性。

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