By Bruno Robert (Eds.)
Artificial Photosynthesis, the newest variation in the Advances in Botanical Research sequence, which publishes in-depth and up to date reports on quite a lot of themes within the plant sciences good points numerous reports via well-known specialists on all points of plant genetics, biochemistry, telephone biology, molecular biology, body structure, and ecology.
- Publishes in-depth and up to date reports on quite a lot of issues in plant sciences
- Presents the most recent details on man made photosynthesis
- Features quite a lot of stories via famous specialists on all elements of plant genetics, biochemistry, mobilephone biology, molecular biology, body structure, and ecology
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Additional info for Artificial Photosynthesis
Electron transfer in chemistry (Vol. 3, pp. 337e408). Weinheim: Wiley-VCH. Schenck, C. , & Lutz, M. (1984). Triplet formation and triplet decay in reaction centers from the photosynthetic bacterium Rhodopseudomonas sphaeroides. Photochemistry and Photobiology, 39, 407e417. 42 D. Gust Sessler, J. , Johnson, M. , Creager, S. , Fettinger, J. , & Ibers, J. A. (1990). Synthesis and characterization of quinone-substituted octaalkyl porphyrin monomers and dimers. Journal of the American Chemical Society, 112, 9310e9329.
All components must be integrated into a single functional device. Most of the initial experiments in artiﬁcial photosynthetic fuel production have been directed towards oxidation of water to produce hydrogen ions, molecular oxygen and electrons, and reduction of the hydrogen ions to hydrogen gas, which is an attractive fuel. In 2008, Mallouk and coworkers reported the photoelectrochemical cell diagrammed schematically in Fig. 16. The cell has two electrodes immersed in an aqueous buffer solution.
De la Garza, L. … Kennis, J. T. M. (2004). Light harvesting and photoprotective functions of carotenoids in compact artiﬁcial photosynthetic antenna designs. Journal of Physical Chemistry B, 108, 414e425. , Ye, H. , MacDonnell, F. , & Rajeshwar, K. (2002). Ruthenium photocatalysts capable of reversibly storing up to four electrons in a single acceptor ligand: a step closer to artiﬁcial photosynthesis. Angewandte Chemie International Edition, 41, 3185. Kong, J. , & Loach, P. A. (1978). In P. L.
Artificial Photosynthesis by Bruno Robert (Eds.)