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Quantum Simulations of Charge Separation at a Model Donor-Acceptor Interface: Role of Delocalization and Local Packing

机译:模型供体-受体界面上电荷分离的量子模拟:离域和局部堆积的作用

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Organic Polymer-based photovoltaic systems offer a viable alternative to more standard solid-state devices for light-harvesting applications. In this study, we investigate the electronic dynamics of a model organic photovoltaic (OPV) heterojunction consisting of polyphenylene vinylene (PPV) oligomers and a -phenyl C61-butyric acid methyl ester (PCBM) blend. Our approach treats the classical molecular dynamics of the atoms within an Ehrenfest mean-field treatment of the - singly excited states spanning a subset of donor and acceptor molecules near the phase boundary of the blend. Our results indicate that interfacial electronic states are modulated by C=C bond stretching motions and that such motions induce avoided crossings between nearby excited states thereby facilitating transitions from localized excitonic configurations to delocalized charge-separated configurations on an ultrafast time-scale. The lowest few excited states of the model interface rapidly mix allowing low frequency C-C out-of-plane torsions to modulate the potential energy surface such that the system can sample both intermolecular charge-transfer and charge-separated electronic configurations on sub-100?fs time scales. Our simulations support an emerging picture of carrier generation in OPV systems in which interfacial electronic states can rapidly decay into charge-separated and current producing states via coupling to vibronic degrees of freedom.
机译:基于有机聚合物的光伏系统为光收集应用提供了更标准的固态设备的可行替代方案。在这项研究中,我们调查了由聚苯撑乙烯撑(PPV)低聚物和-苯基C61-丁酸甲酯(PCBM)混合物组成的有机光伏(OPV)模型异质结的电子动力学。我们的方法在Ehrenfest平均场处理内处理原子的经典分子动力学,Ehrenfest平均场处理涵盖了共混物相界附近跨越供体和受体分子的一个子集的单激发态。我们的结果表明,界面电子态受C = C键拉伸运动的调控,并且这种运动引起附近激发态之间避免的交叉,从而在超快的时间尺度上促进了从局部激子构型到离域电荷分离构型的转变。模型界面的最低激发态迅速混合,从而允许低频CC面外扭曲来调制势能表面,从而使系统可以在100?fs以下采样分子间的电荷转移和电荷分离的电子结构时间尺度。我们的仿真结果支持了OPV系统中载流子产生的新情况,其中界面电子状态可以通过耦合至振动电子自由度而迅速衰减为电荷分离状态和电流产生状态。

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