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Three-centered model of ultrafast photoinduced charge transfer: Continuum dielectric approach

机译:超快光致电荷转移的三中心模型:连续介质法

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A theoretical description of photoinduced charge transfer involves explicit treating both the optical formation of the nuclear wave packet on the excited free energy surface and its ensuing dynamics. The reaction pathway constitutes two-stage charge transfer between three centers. Manifestations of fractional charge transfer at first stage are explored. An expression for time dependent rate constant of photoinduced charge transfer is found in the framework of the linear dielectric continuum model of the medium. The model involves both the intramolecular vibrational reorganization and the Coulombic interaction of the transferred charge with the medium polarization fluctuations and allows to express the rate in terms of intramolecular reorganization parameters and complex dielectric permittivity. The influence of the vibrational coherent motion in the locally excited state on the charge transfer dynamics has been explored. The dependence of the ultrafast photoinduced charge transfer dynamics on the excitation pulse carrier frequency (spectral effect) has been investigated. The spectral effect has been shown to depend on quantity of the fractional charge.
机译:关于光诱导电荷转移的理论描述涉及显式处理激发自由能表面上核波包的光学形成及其随之产生的动力学。反应路径构成了三个中心之间的两阶段电荷转移。探索了第一阶段分数电荷转移的表现形式。在介质的线性介电连续体模型的框架中找到了光诱导电荷转移的时间依赖性速率常数的表达式。该模型既涉及分子内的振动重组,又涉及具有中等极化波动的转移电荷的库仑相互作用,并且可以用分子内重组参数和复介电常数表示速率。研究了局部激发态的振动相干运动对电荷转移动力学的影响。研究了超快光诱导电荷转移动力学对激发脉冲载流子频率(频谱效应)的依赖性。已经表明,光谱效应取决于分数电荷的量。

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