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Enhanced Output from Biohybrid Photoelectrochemical Transparent Tandem Cells Integrating Photosynthetic Proteins Genetically Modified for Expanded Solar Energy Harvesting

机译:整合了基因修饰的光合蛋白质的生物杂交光电化学透明串联细胞的增强输出,以扩大太阳能的收集

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摘要

A transparent biohybrid photoelectrochemical tandem cell is developed by employing optically-complementary variants of a photosynthetic protein in a stacked tandem architecture that utilizes a conductive polymer, poly(3,4-ethylenedioxythiophene):polystyrene sulfonate (PEDOT:PSS), as a transparent counter electrode. The tandem design demonstrates the photocurrent enhancement by complementary absorption of two naturally-occurring red and green versions of a bacterial Reaction center/Light Harvesting protein (RC-LH1) that vary in the type of light harvesting carotenoid feeding the central reaction center module with excited state energy. The use of PEDOT:PSS electrode results in a 12-fold improvement in photocurrent compared to that achievable with Platinum.
机译:通过在堆叠的串联结构中使用光合作用蛋白的光学互补变体,开发透明的生物混合光电化学串联电池,该结构利用导电聚合物聚(3,4-乙撑二氧噻吩):聚苯乙烯磺酸盐(PEDOT:PSS)作为透明计数器电极。串联设计展示了通过互补吸收两种天然存在的红色和绿色版本的细菌反应中心/光收集蛋白(RC-LH1)来增强光电流,这两种类型的光收集类胡萝卜素的种类不同,从而为中央反应中心模块提供了兴奋状态能量。与铂相比,使用PEDOT:PSS电极可使光电流提高12倍。

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