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首页> 外文期刊>The Journal of Chemical Physics >Full-dimensional multilayer multiconfigurational time-dependent Hartree study of electron transfer dynamics in the anthracene/C60 complex
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Full-dimensional multilayer multiconfigurational time-dependent Hartree study of electron transfer dynamics in the anthracene/C60 complex

机译:蒽/ C60络合物中电子传递动力学的全维多层多构型时变Hartree研究

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摘要

Electron transfer at the donor-acceptor heterojunctions plays a critical role in the photoinduced process during the solar energy conversion in organic photovoltaic materials. We theoretically investigate the electron transfer process in the anthracene/C60 donor-acceptor complex by using quantum dynamics calculations. The electron-transfer model Hamiltonian with full dimensionality was built by quantum-chemical calculations. The quantum dynamics calculations were performed using the multiconfigurational time-dependent Hartree (MCTDH) theory and multilayer (ML) MCTDH methods. The latter approach (ML-MCTDH) allows us to conduct the comprehensive study on the quantum evolution of the full-dimensional electron-transfer model including 4 electronic states and 246 vibrational degrees of freedom. Our quantum dynamics calculations exhibit the ultrafast anthracene -> C60 charge transfer process because of the strong coupling between excitonic and charge transfer states. This work demonstrates that the ML-MCTDH is a very powerful method to treat the quantum evolution of complex systems. (C) 2015 AIP Publishing LLC.
机译:供体-受体异质结处的电子转移在有机光伏材料的太阳能转换过程中,在光诱导过程中起关键作用。我们使用量子动力学计算从理论上研究了蒽/ C60供体-受体复合物中的电子转移过程。通过量子化学计算建立了全维电子转移模型哈密顿量。量子动力学计算是使用多结构时变哈特里(MCTDH)理论和多层(ML)MCTDH方法进行的。后一种方法(ML-MCTDH)使我们能够对包括4个电子态和246个振动自由度的全维电子传递模型的量子演化进行全面研究。我们的量子动力学计算显示出超快蒽-> C60电荷转移过程,因为激子和电荷转移状态之间存在强耦合。这项工作表明ML-MCTDH是一种处理复杂系统量子演化的非常有效的方法。 (C)2015 AIP Publishing LLC。

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