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Titlebook: Electrochemical Science for a Sustainable Society; A Tribute to John O’ Kohei Uosaki Book 2017 Springer International Publishing AG 2017 Bi

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https://doi.org/10.1007/978-3-658-16977-0fuels are energy carriers and means of transporting solar energy in the form of easily transportable fuels and these are generated by embedding solar energy in the form of heat or electricity or both in water, CO., and fossil fuels. A number of different technologies and processes (electrolytic, sol
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Electrocatalysis for the Hydrogen Economy,fuel cells, using noble metals for the catalytic material, despite the great progress made in the field of alkaline systems. However, to realize the concept of hydrogen economy on a large scale, the electrode material for either reaction must combine activity, stability and abundance.
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Kinetics at Single Crystal Electrodes,n such a way that the experimental current could be safely assigned to the active intermediate route alone. This is discussed for different orientations and different acidic solutions. The more complex case of ethanol oxidation, which also involves CO poisoning as a result of the C–C bond breaking,
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,Passivity of Iron—A Review,arizing the developments that have become possible as a result of advances in instrumentation and surface analytical methods. Effects of temperature, texture, and hydrodynamics on the mechanisms of passivity of iron are discussed.
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Solar Fuels,fuels are energy carriers and means of transporting solar energy in the form of easily transportable fuels and these are generated by embedding solar energy in the form of heat or electricity or both in water, CO., and fossil fuels. A number of different technologies and processes (electrolytic, sol
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ystallization, theoretical electrochemistry, new methods, photoelectrochemistry, bioelectrochemistry, corrosion and passivity, hydrogen in metals, ionic solutions and ionic liquids, and molten silicates and gla978-3-319-86129-6978-3-319-57310-6
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Book 2017adsorption and electrochemical oxidation of small organic molecules, fuel cells, electrocrystallization, theoretical electrochemistry, new methods, photoelectrochemistry, bioelectrochemistry, corrosion and passivity, hydrogen in metals, ionic solutions and ionic liquids, and molten silicates and gla
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Electrocatalysis for the Hydrogen Economy,and the progress for the reactions relevant to the hydrogen economy, namely the hydrogen and oxygen evolution for water electrolyzers, and the hydrogen oxidation and oxygen reduction for fuel cells. The activity of each reaction can be correlated to a single descriptor, i.e. the adsorption energy of
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