将光合酶和细菌与生物光电器件的电极连接起来

G. Farinola, Gabriella Buscemi, R. Labarile, R. Ragni, F. Milano, D. Vona, M. Trotta
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摘要

光合微生物及其反应中心(RC)光酶可作为生物光电应用的活性物质。本文报道了利用电极从球形红杆菌中提取界面RC分子的方法,旨在将RC集成到电子和电化学器件中。基于选择性相互作用的分子半导体或超分子组织的共价结合已被探索。另外,将RC包埋在生物相容性聚合物中是一种方便的方法。这些软结构包括基于聚多巴胺的薄膜或聚多巴胺/乙二胺纳米颗粒,能够限制和保护RC,同时改善RC电极的电荷转移。我们还描述了使用这些聚合物来处理电极上的活光合细菌细胞。
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Interfacing photosynthetic enzymes and bacteria with electrodes for bio-optoelectronic devices
Photosynthetic microorganisms and their Reaction Center (RC) photoenzymes can be used as active materials for bio-optoelectronic applications. Here we report approaches to interface RC molecules extracted from Rhodobacter sphaeroides with electrodes aiming to integrate the RC in electronic and electrochemical devices. Covalent binding with molecular semiconductors or supramolecular organization based on selective interactions have been explored. Alternatively, entrapment of the RC in biocompatible polymers is a convenient approach. These soft structures include polydopamine-based films or polydopamine/ethylenediamine nanoparticles capable of confining and protecting the RC, while improving RC-electrode charge transfer. We also describe the use of these polymers to address living photosynthetic bacterial cells on electrodes.
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