3D Proton Transfer Augments Bio‐Photocurrent Generation
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Summary
An enhancement of the photocurrent is achieved in a biohybrid nanocomposite consisting of nanovesicle reconstituted proteorhodopsin and potassium phosphotungstate nanoparticles and this improvement of the photo-electric performance is attributed to the construction of a 3D proton-transfer framework.
- Type
- article
- Published
- 2015-04-01
- Cited by
- 10
- References
- 60
- Access
- Open access
- OpenAlex
- https://openalex.org/W25786358
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34069893
Keywords
Physics
References
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- Nano-network electronic conduction in iron and nickel olivine phosphates
Cited by
- Biomimetic smart nanochannels for power harvesting
- Nature‐Inspired Electrochemical Energy‐Storage Materials and Devices
- Effect of Complex Nutrients and Repeated-Batch Cultivation of Halobacterium salinarum on enhancing Bacteriorhodopsin Production
- A novel cell-scale bio-nanogenerator based on electron-ion interaction for fast light power conversion.
- A Review on Bacteriorhodopsin-Based Bioelectronic Devices
- A novel light-driven pH-biosensor based on bacteriorhodopsin
- Unidirectional electron injection and accelerated proton transport in bacteriorhodopsin based Bio-p-n junctions.
- Bio-inspired strategies for next-generation perovskite solar mobile power sources.
- Photoactivated Bacteriorhodopsin/SiNx Nanopore-Based Biological Nanofluidic Generator with Single-Protein Sensitivity.
- Nitrogen Dense Distributions of Imidazole Grafted Dipyridyl Polybenzimidazole for a High Temperature Proton Exchange Membrane
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