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Porphyrin dimers: A theoretical understanding of the impact of electronic coupling strength on the two-photon absorption properties

机译:卟啉二聚体:电子耦合强度对双光子吸收特性影响的理论理解

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摘要

Many porphyrin oligomers exhibit large two-photon absorptions (TPA) at fundamental photon energies around 1.5 eV, while the corresponding monomers have negligible TPA cross-sections in that energy range. In general, our understanding of nonlinear absorption in these compounds is rather limited compared to that of linear absorption. Here, we seek to provide insight into this issue by examining various structural aspects of porphyrin dimers and analyzing how they lead to either "pure" or double resonance-enhanced TPA cross-sections. To do so, we have carried out highly correlated quantum-chemical calculations on model chromophores which differ by their central π-conjugated bridges or acceptor moieties. In a number of such dimers, the calculated energies of the lowest two-photon active states are stabilized and display significant cross-sections as the electronic coupling strength between the two porphyrin moieties becomes significant; in these instances, the lowest electronic TPA-active state is located in an energy range preventing contributions from double resonance effects. On the other hand, in dimers in which the porphyrin moieties are either very strongly or very weakly electronically coupled, the TPA cross-sections are mainly due to double resonance effects.
机译:许多卟啉低聚物在1.5 eV左右的基本光子能量下表现出较大的双光子吸收(TPA),而相应的单体在该能量范围内的TPA截面可忽略不计。通常,与线性吸收相比,我们对这些化合物中非线性吸收的理解相当有限。在这里,我们试图通过研究卟啉二聚体的各个结构方面并分析它们如何导致“纯”或双共振增强的TPA横截面,来提供有关此问题的见识。为此,我们对模型发色团进行了高度相关的量子化学计算,这些发色团的中心π共轭桥或受体部分不同。在许多这样的二聚体中,当两个卟啉部分之间的电子耦合强度变得显着时,最低的两个光子活性态的计算能量稳定并显示出明显的横截面。在这些情况下,最低的电子TPA激活状态位于防止双重共振效应贡献的能量范围内。另一方面,在其中卟啉部分非常强地或非常弱地电耦合的二聚体中,TPA横截面主要是由于双重共振效应。

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