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在光捕获复合物中发色团的排列:机遇与设计。

On the arrangement of chromophores in light harvesting complexes: chance versus design.

机构信息

Department of Chemistry, University of Liverpool, Liverpool L69 7ZD, UK.

出版信息

Faraday Discuss. 2019 Dec 16;221(0):133-149. doi: 10.1039/c9fd00045c.

Abstract

We used a homogeneous computational approach to derive the excitonic Hamiltonian for five light harvesting complexes containing only one type of chromophore and compare them in terms of statistical descriptors. We then studied the approximate exciton dynamics for the five complexes introducing a measure, the (averaged and time-dependent) inverse participation ratio, that enables the comparison between very diverse complexes on the same ground. We find that the global dynamics are very similar across the set of systems despite the variety of geometric structures of the complexes. In particular, the dynamics of four out of five light harvesting complexes are barely distinguishable with a small variation from the norm seen only for the Fenna-Matthews-Olson complex. We use the information from the realistic Hamiltonians to build a reduced model system that shows how the global dynamics are ultimately dominated by a single parameter, the degree of localization of the excitonic Hamiltonian eigenstates. Considering the physically plausible range of system parameters, the reduced model explains why the dynamics are so similar across most light harvesting complexes containing a single type of chromophore regardless of the detailed pattern of the inter-chromophore excitonic coupling.

摘要

我们使用均匀的计算方法推导出仅包含一种发色团的五个光捕获复合物的激子哈密顿量,并根据统计描述符对它们进行比较。然后,我们研究了五个复合物的近似激子动力学,引入了一个度量标准,即(平均和时变)逆参与比,它能够在相同的基础上比较非常不同的复合物。我们发现,尽管复合物的几何结构多种多样,但整个系统的动力学非常相似。特别是,五个光捕获复合物中的四个动力学几乎无法区分,只有 Fenna-Matthews-Olson 复合物的标准值略有变化。我们利用来自实际哈密顿量的信息构建了一个简化模型系统,展示了全局动力学如何最终由单个参数主导,即激子哈密顿量本征态的局域化程度。考虑到系统参数的物理合理范围,简化模型解释了为什么大多数含有单一类型发色团的光捕获复合物的动力学如此相似,而不管发色团间激子耦合的详细模式如何。

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