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Self-Assembling Photosynthetic Reaction Centers on Electrodes for Current Generation

机译:电极上自组装光合作用反应中心的产生

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Photosynthetic reaction centers (RCs) made from photosynthetic organisms can be used in solar batteries because their molecules cause light-induced charge separation. We present a simple immobilization system of the intact RCs from Rhodobacter sphaeroides on an electrode that uses nickel ligand binding by the hexameric histidine tag on H subunit (HHisRC). The binding constant of HHisRC to the nickel-nitrilotriacetic acid (Ni-NTA) chip measured with a surface plasmon resonance instrument was 1.6 X 10~8 M~(-1). HHisRCs were immobilized on an indium tin oxide electrode overlaid with an Ni-NTA gold substrate. The photoinduced displacement current of this electrode was measured to estimate the orientation of HHisRC on the electrode, and the detachability of HHisRC from the electrode was determined by using an imidazole solution wash. The direction of the flash-light-induced displacement current suggested that the H subunit side of the immobilized HHisRC faced the surface of the electrode. The photoinduced current disappeared after the electrode was washed in the imidazole solution. This simple immobilization and detachment of HHisRC to the electrode might be useful for making a reproducible photocurrent device.
机译:由光合作用生物制成的光合作用反应中心(RCs)可用于太阳能电池,因为它们的分子会引起光诱导的电荷分离。我们提出了一个完整的RCs,从球形红球菌在电极上使用镍配体结合的H亚基(HHisRC)上的六聚组氨酸标签的简单固定化系统。用表面等离振子共振仪测得的HHisRC与镍三氮乙酸镍(Ni-NTA)芯片的结合常数为1.6 X 10〜8 M〜(-1)。将HHisRCs固定在覆盖有Ni-NTA金基底的氧化铟锡电极上。测量该电极的光诱导位移电流以估计HHisRC在电极上的取向,并通过使用咪唑溶液洗涤确定HHisRC与电极的可分离性。闪光灯引起的位移电流的方向表明,固定化的HHisRC的H亚基侧面对电极的表面。在咪唑溶液中洗涤电极后,光感应电流消失。 HHisRC到电极的这种简单固定和分离对于制造可重现的光电流设备可能有用。

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