首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Light-Induced Equilibration Kinetics in Membrane-Bound Photosynthetic Reaction Centers: Nonlinear Dynamic Effects in Multiple Scattering Media
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Light-Induced Equilibration Kinetics in Membrane-Bound Photosynthetic Reaction Centers: Nonlinear Dynamic Effects in Multiple Scattering Media

机译:膜结合光合作用中心的光诱导平衡动力学:多种散射介质中的非线性动力学效应。

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摘要

Nonequilibrium dynamic effects in membrane-bound reaction centers (RCs) from photosynthetic bacteria are studied for the first time. We show that the accumulation of slow conformational changes triggered by charge-separation events in the RCs control system dynamics and depend on illumination conditions in a way similar to that for isolated RCs. The light-induced, transient kinetics of membrane-bound RCs are described using a model of electron-conformational transitions governed by system diffusion along the surface of a double-well, effective adiabatic potential. The light-triggered conformational transitions in the chromatophores are estimated to occur at an actinic light intensity at least 10 times lower than that needed for conformational transitions in isolated RCs. This finding is attributed to efficient, multiple-scattering effects that occur in sample with membranes. Related optical properties of the chromatophores as a disordered system with multiple light scattering are characterized for the first time.
机译:首次研究了光合细菌在膜结合反应中心(RCs)中的非平衡动力学效应。我们表明,由电荷分离事件在RC控制系统动力学中触发的缓慢构象变化的累积,并以与隔离RC相似的方式取决于照明条件。膜结合的RC的光诱导瞬态动力学是通过电子构象跃迁模型来描述的,该模型由沿双井有效绝热势能表面的系统扩散控制。据估计,色谱中的光触发构象转变发生在光化光强度下,其光强度比隔离的RC中构象转变所需的光化学强度低至少10倍。该发现归因于带有膜的样品中发生的有效的多重散射效应。首次表征了具有多个光散射的无序系统色谱的相关光学特性。

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