4.4 Review

Hydrogen photoproduction by use of photosynthetic organisms and biomimetic systems

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PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES
卷 8, 期 2, 页码 148-156

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SPRINGERNATURE
DOI: 10.1039/b814932a

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资金

  1. Japan Society for the Promotion of Science (JSPS) [19550173]
  2. JSPS Invitation Fellowship for Research in Japan [S-07106]
  3. Grants-in-Aid for Scientific Research [19550173] Funding Source: KAKEN

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Hydrogen can be important clean fuel for future. Among different technologies for hydrogen production, oxygenic natural and artificial photosyntheses using direct photochemistry in synthetic complexes have a great potential to produce hydrogen, since both use clean and cheap sources: water and solar energy. Artificial photosynthesis is one way to produce hydrogen from water using sunlight by employing biomimetic complexes. However, splitting of water into protons and oxygen is energetically demanding and chemically difficult. In oxygenic photosynthetic microorganisms such as algae and cyanobacteria, water is split into electrons and protons, which during primary photosynthetic process are redirected by photosynthetic electron transport chain, and ferredoxin, to the hydrogen- producing enzymes hydrogenase or nitrogenase. By these enzymes, e(-) and H+ recombine and form gaseous hydrogen. Biohydrogen activity of hydrogenase can be very high but it is extremely sensitive to photosynthetic O-2. In contrast, nitrogenase is insensitive to O-2, but has lower activity. At the moment, the efficiency of biohydrogen production is low. However, theoretical expectations suggest that the rates of photon conversion efficiency for H-2 bioproduction can be high enough (> 10%). Our review examines the main pathways of H-2 photoproduction by using of photosynthetic organisms and biomimetic photosynthetic systems.

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