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Titlebook: Solar to Chemical Energy Conversion; Theory and Applicati Masakazu Sugiyama,Katsushi Fujii,Shinichiro Nakamu Book 2016 Springer Internation

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CO2 Reduction Using Electrochemical Approachn in aqueous electrolytes. The studies started in the beginning of 20th century using metal electrodes of high hydrogen overvoltage, and the main product remained formate for long time. A breakthrough appeared in 1980s; Cu electrode gives rise to hydrocarbons, and Au and Ag form CO. This chapter pro
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Electrochemical Water Splitting Coupled with Solar Cellsave been established and well-studied, however, their coupling is difficult due to the variability of the solar radiation. In this chapter, the coupling technique and efficiency improvement of the combination of the electrochemical cell and solar cell are discussed based on the basic principles of b
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Fundamentals of Chemical Reaction Kinetics is represented by transition state theory (TST). Problems in solid surfaces and in catalytic turn over frequency (TOF) are also discussed. These will be provided as an overview of the basic concepts in accordance with the purpose of this book.
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Photocatalytic Approach for CO2 Fixationve been a lot of challenges that have to be addressed in this field of research, but several breakthroughs have been achieved in recent 10 years. In this chapter, photocatalytic CO. reduction systems, which are of particular importance, are reviewed, with a focus on both homogeneous and heterogeneous aspects.
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Water Splitting Using Electrochemical Approachreaction (OER) by MnO., this chapter introduces the design rationale for the efficient OER catalysts, and discusses the evolutional origin of natural Mn.-clusters to provide a better understanding of the differences in activity between natural and man-made OER catalysts.
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