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首页> 外文期刊>Chemical Society Reviews >Strategies for 'wiring' redox-active proteins to electrodes and applications in biosensors, biofuel cells, and nanotechnology
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Strategies for 'wiring' redox-active proteins to electrodes and applications in biosensors, biofuel cells, and nanotechnology

机译:将氧化还原活性蛋白“连接”到电极的策略及其在生物传感器,生物燃料电池和纳米技术中的应用

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摘要

In this tutorial review the basic approaches to establish electrochemical communication between redox-active proteins and electrodes are elucidated and examples for applications in electrochemical biosensors, biofuel cells and nanotechnology are presented. The early stage of protein electrochemistry is described giving a short overview over electron transfer (ET) between electrodes and proteins, followed by a brief introduction into experimental procedures for studying proteins at electrodes and possible applications arising thereof. The article starts with discussing the electrochemistry of cytochrome c, the first redox-active protein, for which direct reversible ET was obtained, under diffusion controlled conditions and after adsorption to electrodes. Next, examples for the electrochemical study of redox enzymes adsorbed on electrodes and modes of immobilization are discussed. Shortly the experimental approach for investigating redox-active proteins adsorbed on electrodes is outlined. Possible applications of redox enzymes in electrochemical biosensors and biofuel cells working by direct ET (DET) and mediated ET (MET) are presented. Furthermore, the reconstitution of redox active proteins at electrodes using molecular wire-like units in order to "wire" the proteins to the electrode surface and possible applications in nanotechnology are discussed. 201V40,3564-3576
机译:在本教程的回顾中,阐明了在氧化还原活性蛋白和电极之间建立电化学通讯的基本方法,并给出了在电化学生物传感器,生物燃料电池和纳米技术中应用的实例。描述了蛋白质电化学的早期阶段,简要介绍了电极和蛋白质之间的电子转移(ET),随后简要介绍了研究电极上蛋白质的实验程序及其可能产生的应用。本文首先讨论了细胞色素c的电化学,它是第一个氧化还原活性蛋白,在扩散控制的条件下以及吸附到电极上后,获得了直接可逆的ET。接下来,讨论用于电极上吸附的氧化还原酶的电化学研究实例和固定方式。简要概述了研究吸附在电极上的氧化还原活性蛋白的实验方法。介绍了氧化还原酶在通过直接ET(DET)和介导ET(MET)工作的电化学生物传感器和生物燃料电池中的可能应用。此外,还讨论了使用分子线状单元在电极上重建氧化还原活性蛋白,以将蛋白“连接”到电极表面的方法,以及在纳米技术中的可能应用。 201V40,3564-3576

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