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- W2123412811 abstract "Oxygenic photosynthesis is driven via sequential action of Photosystem II (PSII) and (PSI)reaction centers via the Z-scheme. Both of these pigment–membrane protein complexes are found in cyanobacteria, algae, and plants. Unlike PSII, PSI is remarkably stable and does not undergo limiting photo-damage. This stability, as well as other fundamental structural differences, makes PSI the most attractive reaction centers for applied photosynthetic applications. These applied applications exploit the efficient light harvesting and high quantum yield of PSI where the isolated PSI particles are redeployed providing electrons directly as a photocurrent or, via a coupled catalyst to yield H 2 . Recent advances in molecular genetics, synthetic biology, and nanotechnology have merged to allow PSI to be integrated into a myriad of biohybrid devices. In photocurrent producing devices, PSI has been immobilized onto various electrode substrates with a continuously evolving toolkit of strategies and novel reagents. However, these innovative yet highly variable designs make it difficult to identify the rate-limiting steps and/or components that function as bottlenecks in PSI-biohybrid devices. In this study we aim to highlight these recent advances with a focus on identifying the similarities and differences in electrode surfaces, immobilization/orientation strategies, and artificial redox mediators. Collectively this work has been able to maintain an annual increase in photocurrent density (A cm − 2 ) of ~ 10-fold over the past decade. The potential drawbacks and attractive features of some of these schemes are also discussed with their feasibility on a large-scale. As an environmentally benign and renewable resource, PSI may provide a new sustainable source of bioenergy. This article is part of a Special Issue entitled: Photosynthesis Research for Sustainability: Keys to Produce Clean Energy. • Photosystem I is very attractive for sustainable energy conversion. • Many strategies exist for integration of PSI into biohybrid devices. • We have summarized over 30 recent reports on PSI-based devices. • Progress shows ~ 10-fold increase/year in photocurrent density for the past decade. • The potential of PSI for sustainable energy conversion is discussed." @default.
- W2123412811 created "2016-06-24" @default.
- W2123412811 creator A5046981823 @default.
- W2123412811 creator A5047465035 @default.
- W2123412811 date "2014-09-01" @default.
- W2123412811 modified "2023-09-29" @default.
- W2123412811 title "Growing green electricity: Progress and strategies for use of Photosystem I for sustainable photovoltaic energy conversion" @default.
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