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  • Photosynthesis is performed by a multitude of organisms, but in P nearly all cases, it is variations on a common theme: absorption of light followed by energy transfer to a reaction center where charge separation takes place, This initial form of chemical energy is stabilized by the biosynthesis of carbohydrates. To produce these energy-rich products, a substrate is needed that feeds in reductive equivalents, When photosynthetic microorganisms learned to use water as a substrate some 2 billion years ago, a fundamental barrier against unlimited use of solar energy was overcome. The possibility of solar energy use has inspired researchers to construct artificial photosynthetic systems that show analogy to parts of the intricate molecular machinery of photosynthesis. Recent years have seen a reorientation of efforts toward creating integrated light-to-fuel systems that can use solar energy for direct synthesis of energy-rich compounds, so-called solar fuels. Sustainable production of solar fuels is a l
  • Photosynthesis is performed by a multitude of organisms, but in P nearly all cases, it is variations on a common theme: absorption of light followed by energy transfer to a reaction center where charge separation takes place, This initial form of chemical energy is stabilized by the biosynthesis of carbohydrates. To produce these energy-rich products, a substrate is needed that feeds in reductive equivalents, When photosynthetic microorganisms learned to use water as a substrate some 2 billion years ago, a fundamental barrier against unlimited use of solar energy was overcome. The possibility of solar energy use has inspired researchers to construct artificial photosynthetic systems that show analogy to parts of the intricate molecular machinery of photosynthesis. Recent years have seen a reorientation of efforts toward creating integrated light-to-fuel systems that can use solar energy for direct synthesis of energy-rich compounds, so-called solar fuels. Sustainable production of solar fuels is a l (en)
Title
  • Biomimetic and Microbial Approaches to Solar Fuel Generation
  • Biomimetic and Microbial Approaches to Solar Fuel Generation (en)
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  • Biomimetic and Microbial Approaches to Solar Fuel Generation
  • Biomimetic and Microbial Approaches to Solar Fuel Generation (en)
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  • RIV/60076658:12640/09:00009998!RIV10-MSM-12640___
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  • RIV/60076658:12640/09:00009998
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  • HYDROGENASE ACTIVE-SITE; PUNCTIFORME ATCC 29133; INTRAMOLECULAR ELECTRON-TRANSFER; OXYGEN-EVOLVING COMPLEX; DINUCLEAR MN COMPLEX; PHOTOSYSTEM-II; IRON HYDROGENASE; ARTIFICIAL PHOTOSYNTHESIS; MANGANESE COMPLEXES; RUTHENIUM PHOTOSENSITIZER (en)
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  • US - Spojené státy americké
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  • [EF063A4C8F8E]
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  • Accounts of Chemical Research
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http://linked.open...v/svazekPeriodika
  • 42
http://linked.open...iv/tvurceVysledku
  • Polívka, Tomáš
  • Ott, S.
  • Hammarstrom, L.
  • Magnuson, A.
  • Sundstrom, V.
  • Anderlund, M.
  • Johansson, O.
  • Lindblad, P.
  • Lomoth, R.
  • Stensjo, K.
  • Styring, S.
http://linked.open...ain/vavai/riv/wos
  • 000273082800006
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  • 0001-4842
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  • 12640
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