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Primary processes in the bacterial reaction center probed by two-dimensional electronic spectroscopy

机译:二维电子光谱法探测细菌反应中心的主要过程

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摘要

In the initial steps of photosynthesis, reaction centers convert solar energy to stable charge-separated states with near-unity quantum efficiency. The reaction center from purple bacteria remains an important model system for probing the structure–function relationship and understanding mechanisms of photosynthetic charge separation. Here we perform 2D electronic spectroscopy (2DES) on bacterial reaction centers (BRCs) from two mutants of the purple bacterium Rhodobacter capsulatus, spanning the Qy absorption bands of the BRC. We analyze the 2DES data using a multiexcitation global-fitting approach that employs a common set of basis spectra for all excitation frequencies, incorporating inputs from the linear absorption spectrum and the BRC structure. We extract the exciton energies, resolving the previously hidden upper exciton state of the special pair. We show that the time-dependent 2DES data are well-represented by a two-step sequential reaction scheme in which charge separation proceeds from the excited state of the special pair (P*) to P+HA via the intermediate P+BA. When inhomogeneous broadening and Stark shifts of the B* band are taken into account we can adequately describe the 2DES data without the need to introduce a second charge-separation pathway originating from the excited state of the monomeric bacteriochlorophyll BA*.
机译:在光合作用的初始阶段,反应中心以接近统一的量子效率将太阳能转换为稳定的电荷分离态。紫色细菌的反应中心仍然是一个重要的模型系统,用于探索结构与功能的关系并了解光合电荷分离的机理。在这里,我们对细菌反应中心(BRC)进行了二维电子光谱(2DES),该反应来自紫色细菌荚膜红细菌的两个突变体,跨越了BRC的Qy吸收带。我们使用多激发全局拟合方法分析2DES数据,该方法对所有激发频率采用一套通用的基础光谱,并结合了线性吸收光谱和BRC结构的输入。我们提取激子能量,从而解决了特殊对中先前隐藏的上激子状态。我们表明,时分依赖的2DES数据由两步顺序反应方案很好地表示,其中电荷分离从特殊对(P *)的激发态发展到P + HA < sup>-通过中间P + BA -。当考虑到B *谱带的不均匀扩宽和Stark位移时,我们可以充分描述2DES数据,而无需引入源自单体细菌叶绿素BA *激发态的第二个电荷分离途径。

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