Analytical Chemistry - Center for Electrochemical Sciences (CES), Faculty of Chemistry and Biochemistry, Ruhr University Bochum, Universitätsstr. 150, 44780, Bochum, Germany.
Plant Biochemistry; Faculty of Biology and Biotechnology, Ruhr University Bochum, Universitätsstr. 150, 44780, Bochum, Germany.
Chempluschem. 2020 Jul;85(7):1396-1400. doi: 10.1002/cplu.202000291.
The fabrication and electrochemical evaluation of transparent photoelectrodes consisting of Photosystem I (PSI) or Photosystem II (PSII) is described, which are embedded and electrically wired by a redox polymer. The fabrication process is performed by an automated airbrush-type spray coating system, which ensures controlled and scalable electrode preparation. As proof of concept, electrodes with a surface area of up to 25 cm were prepared. The macro-porous structure of the indium tin oxide electrodes allows a high loading of the photoactive protein complexes leading to enhanced photocurrents, which are essential for potentially technologically relevant solar-powered devices. In addition, we show that unpurified crude PSII extracts, which can be provided in comparatively high yields for electrode modification, are suitable for photoelectrode fabrication with comparable photocurrent densities.
描述了由光合系统 I(PSI)或光合系统 II(PSII)组成的透明光电电极的制造和电化学评估,这些电极由氧化还原聚合物嵌入和电连接。制造过程通过自动化喷枪式喷涂系统进行,可确保可控和可扩展的电极制备。作为概念验证,制备了表面积高达 25cm 的电极。氧化铟锡电极的大孔结构允许高负载光活性蛋白复合物,从而产生增强的光电流,这对于潜在的技术相关太阳能设备至关重要。此外,我们表明,未经纯化的粗 PSII 提取物可用于电极修饰,以提供相对较高的产量,适合用于光电化学制造,具有可比的光电流密度。