光电阴极
化学
光电流
光系统II
能量转换
光系统I
纳米技术
电子受体
光合作用
生化工程
光能
光电子学
光化学
电子
物理
材料科学
光学
工程类
热力学
量子力学
生物化学
作者
Fangyuan Zhao,Adrian Ruff,Matthias Rögner,Wolfgang Schuhmann,Felipe Conzuelo
摘要
The development of bioelectrochemical assemblies for sustainable energy transformation constitutes an increasingly important field of research. Significant progress has been made in the development of semiartificial devices for conversion of light into electrical energy by integration of photosynthetic biomolecules on electrodes. However, sufficient long-term stability of such biophotoelectrodes has been compromised by reactive species generated under aerobic operation. Therefore, meeting the requirements of practical applications still remains unsolved. We present the operation of a photosystem I-based photocathode using an electron acceptor that enables photocurrent generation under anaerobic conditions as the basis for a biodevice with substantially improved stability. A continuous operation lifetime considerably superior to previous reports and at higher light intensities is paving the way toward the potential application of semiartificial energy conversion devices.
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