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用于光生物电化学电池的光合反应中心功能化电极。

Photosynthetic reaction center-functionalized electrodes for photo-bioelectrochemical cells.

机构信息

Institute of Chemistry, The Minerva Center for Biohybrid Systems, The Hebrew University of Jerusalem, 91904, Jerusalem, Israel.

出版信息

Photosynth Res. 2014 May;120(1-2):71-85. doi: 10.1007/s11120-013-9796-3. Epub 2013 Feb 1.

Abstract

During the last few years, intensive research efforts have been directed toward the application of several highly efficient light-harvesting photosynthetic proteins, including reaction centers (RCs), photosystem I (PSI), and photosystem II (PSII), as key components in the light-triggered generation of fuels or electrical power. This review highlights recent advances for the nano-engineering of photo-bioelectrochemical cells through the assembly of the photosynthetic proteins on electrode surfaces. Various strategies to immobilize the photosynthetic complexes on conductive surfaces and different methodologies to electrically wire them with the electrode supports are presented. The different photoelectrochemical systems exhibit a wide range of photocurrent intensities and power outputs that sharply depend on the nano-engineering strategy and the electroactive components. Such cells are promising candidates for a future production of biologically-driven solar power.

摘要

在过去的几年中,人们进行了大量的研究工作,致力于将几种高效的光捕获光合作用蛋白(包括反应中心(RC)、光合作用 I(PSI)和光合作用 II(PSII))应用于光触发燃料或电力生成的关键组件。本综述重点介绍了通过将光合作用蛋白组装在电极表面上来对光电生物电化学电池进行纳米工程的最新进展。介绍了在导电表面上固定光合作用复合物的各种策略以及用电极支撑物对其进行电布线的不同方法。不同的光电化学系统表现出广泛的光电流强度和功率输出,这些强度和输出值强烈依赖于纳米工程策略和电活性组件。此类电池有望成为未来生物驱动太阳能发电的候选者。

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