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Photobiological H2 Production: Theoretical Maximum Light Conversion Efficiency and Strategies to Achieve It
Maria Ghirardi
Biosciences Center
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Dive into the research topics of 'Photobiological H2 Production: Theoretical Maximum Light Conversion Efficiency and Strategies to Achieve It'. Together they form a unique fingerprint.
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Chemistry
Electron Acceptor
100%
Electron Donor
100%
Chlorophyll a
100%
Chloroplast
100%
Ferredoxin
100%
Photosystem I
100%
Electron Transport
100%
Photosynthesis
100%
Carotenoid
100%
Protein Complex
100%
Chlorophyll
100%
Photosystem II
100%
Biochemistry, Genetics and Molecular Biology
Efficiency of Conversion
100%
Chlorophyll
100%
Photosystem
50%
Photosystem II
50%
Photosystem I
50%
Enzyme
50%
Electron Transport
50%
Chloroplast
50%
Physical Parameter
50%
Ferredoxin
50%
Carotenoid
50%
Immunology and Microbiology
Photosynthesis
100%
Electron Transport
100%
Chloroplast
100%
Physical Parameter
100%
Photosystem II
100%
Photosystem I
100%
Material Science
Photosystem
100%
Electron Transfer
50%
Carotenoid
50%
Protein Complex
50%
Photosystem II
50%
Physics
Antenna
100%
Chloroplast
100%