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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Structure and Function in the Isolated Reaction-Center Complex of Photosystem II. 2. Models for Energy Relaxation and Charge Separation in a Protein Matrix
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Structure and Function in the Isolated Reaction-Center Complex of Photosystem II. 2. Models for Energy Relaxation and Charge Separation in a Protein Matrix

机译:光系统II中孤立的反应中心复合体的结构和功能。 2.蛋白质基质中能量弛豫和电荷分离的模型

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摘要

We have developed a model that describes the energy and charge transfer in photosystem II reaction-center complexes, using parameters with clear physical interpretations. The input parameters are deduced from independent experimental work and from the theoretical constraints of the system. This model is comprised of exitonically coupled chlorophyll electronic states, including charge-transfer states, which are coupled to the protein bath. The dynamics of the system are calculated using a master-equation approach, and the results are converted into spectroscopic observables for comparison with experimental data. The model accurately depicts the emission kinetics observed for both bacterial reaction centers from Rhodobacter sphaeroides and photosystem II from spinach. The model is discussed with regard to the wavelength dependence of energy transfer, the effects of static disorder in the system, and the initial ultrafast dynamics of the charge separation.
机译:我们已经开发了一个模型,该模型使用具有清晰物理解释的参数来描述光系统II反应中心复合物中的能量和电荷转移。输入参数是根据独立的实验工作和系统的理论约束推导出来的。该模型包括与蛋白质浴耦合的外显子耦合的叶绿素电子态,包括电荷转移态。使用主方程法计算系统的动力学,并将结果转换为光谱可观察物,以与实验数据进行比较。该模型准确地描绘了球形球形红细菌细菌反应中心和菠菜光系统II的发射动力学。关于能量转移的波长依赖性,系统中的静态无序效应以及电荷分离的初始超快动力学,讨论了该模型。

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