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Fast reversible electron transfer for photosynthetic reaction center from wild type Rhodobacter sphaeroides re-constituted in polycation sandwiched monolayer film

机译:快速可逆电子转移,从野生型球形红球菌在聚阳离子夹心单层膜中重构,实现光合作用中心

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Direct reversible electron transfer for photosynthetic reaction center from wild type Rhodobacter sphaeroides re-constituted in polycation sandwiched monolayer film was observed in this work. The redox potential E~0' = 0.46 V vs. NHE for first primary donor redox couple P/P~+ was accurately measured from reversible CV or SWV peaks, which were quite close to those obtained from optic redox titration method. Reaction center (RC) in film was found re-constituted in such an ordered way that the orientation of RC favored the electron transfer in film. Thus, the protein electroactivity seems to be turned on in this artificial biomimic thin film. Furthermore, RC in the film features a photo-induced redox-peak fluctuation, suggesting an intact and functional state for RC in such film. Redox peaks were also found dependent of pH, implying a proton-coupled electron transfer occurring in film. Charge recombination was observed accompanied with change of electrochemical driving force. Electrochemical model assuming several classes of electroactive sites in the films on the electrode with a dispersion of standard potentials successfully fits SWV experimental data at different pulse height and frequency.
机译:在这项工作中,观察到了来自野生型球形红球菌的光合反应中心的直接可逆电子转移,该野生型球形红球菌在聚阳离子夹心单层膜中重构。从可逆的CV或SWV峰精确测量了第一主供体氧化还原对P / P〜+的氧化还原电势E〜0'= 0.46 V vs. NHE,这与通过光学氧化还原滴定法获得的峰非常接近。发现膜中的反应中心(RC)以有序的方式重构,使得RC的取向有利于膜中的电子转移。因此,似乎在该人造仿生薄膜中开启了蛋白质电活性。此外,膜中的RC具有光诱导的氧化还原峰波动,表明该膜中RC处于完整和功能状态。还发现氧化还原峰取决于pH,这意味着在膜中发生质子偶联的电子转移。观察到电荷复合,伴随着电化学驱动力的变化。假设电极膜上具有几类电活性位点且具有标准电势分散的电化学模型可以成功地拟合不同脉冲高度和频率下的SWV实验数据。

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