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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Quantum-Chemical Studies on Excitation Energy Transfer Processes in BODIPY-Based Donor-Acceptor Systems
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Quantum-Chemical Studies on Excitation Energy Transfer Processes in BODIPY-Based Donor-Acceptor Systems

机译:基于BODIPY的供体-受体系统中激发能转移过程的量子化学研究

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BODIPY-based excitation energy transfer (EET) cassettes are experimentally extensively studied and serve as excellent model systems for the investigation of photophysical processes, since they occur in any photosynthetic system and in organic photovoltaics. In the present work, the EET rates in five BODIPY-based EET cassettes in which anthracene serves as the donor have been determined, employing the monomer transition density approach (MTD) and the ideal dipole approximation (IDA). To this end, a new computer program has been devised that calculates the direct and exchange contributions to the excitonic coupling (EC) matrix element from transition density matrices generated by a combined density functional and multireference configuration interaction (DFT/MRCI) calculation for the monomers. EET rates have been calculated according to Fermi's Golden Rule from the EC and the spectral overlap, which was obtained from the calculated vibrationally resolved emission and absorption spectra of donor and acceptor, respectively. We find that the direct contribution to the EC matrix element is dominant in the studied EET cassettes. Furthermore, we show that the contribution of the molecular linker to the EET rate cannot be neglected. In our best fragment model, the molecular linker is attached to the donor moiety. For cassettes in which the transition dipole moments of donor and acceptor are oriented in parallel manner, our results confirm the experimental findings reported by Kim et al. [J. Phys. Chem. A 2006, 110, 20-27]. In cassettes with a perpendicular orientation of the donor and acceptor transition dipole moments, dynamic effects turn out to be important.
机译:基于BODIPY的激发能转移(EET)盒在实验上得到了广泛的研究,并作为研究光物理过程的出色模型系统,因为它们存在于任何光合作用系统和有机光伏中。在目前的工作中,已采用单体过渡密度法(MTD)和理想偶极近似(IDA)确定了五个以蒽为供体的基于BODIPY的EET盒中的EET速率。为此,已经设计了一种新的计算机程序,该程序从单体的密度函数和多参考构型相互作用(DFT / MRCI)的组合计算所产生的跃迁密度矩阵中,计算出对激子耦合(EC)矩阵元素的直接贡献和交换贡献。 。 EET速率已根据EC的费米黄金法则和光谱重叠计算得出,光谱重叠分别从计算出的施主和受主的振动分辨发射光谱和吸收光谱中获得。我们发现,对EC矩阵元素的直接贡献在所研究的EET盒式磁带中占主导地位。此外,我们表明分子接头对EET速率的贡献不可忽略。在我们最好的片段模型中,分子接头与供体部分相连。对于供体和受体的跃迁偶极矩平行定向的盒式磁带,我们的结果证实了Kim等人报道的实验发现。 [J.物理化学A 2006,110,20-27]。在施主和受主跃迁偶极矩垂直取向的暗盒中,动态效果非常重要。

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