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A comprehensive review of advances in one of today's most technologically important research fields.Spurred on by society's increasingly urgent demand for an inexpensive, environment-friendly alternative to the internal combustion engine, research into electrocatalytic fuel cells has yielded many exciting advances in the past few years. This rapid rate of progress, however, has created a daunting challenge for anyone attempting to track the important new trends in electrocatalysis by sorting through the huge and rapidly growing body of world literature in the field.Electrocatalysis was designed to save scientists hours of arduous legwork by providing an authoritative review of the most important recent advances in all technologically relevant aspects of electrocatalysis. Leading researchers from North America, Europe, and the Far East share what they know about an array of related topics, including:* Electrocatalysis of hydrogen and oxygen electrode reactions* Electrooxidation of small organic molecules* Design and synthesis of new electrocatalytic materials* The distribution and storage of hydrogen in metal hydrides* Hydrogenation of organic compounds as a means of hydrogen storage* Electron, ion, and atom transfer reactions* Influence of the double-layer structure on the rate of charge transfer* A unified theory of electron and ion transfer reactions at metal electrodes.Electrocatalysis is an indispensable working resource for electrochemists, chemical engineers, surface scientists, and materials scientists.
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"Catalysis in Electrochemistry: From Fundamentals to Strategies for Fuel Cell Development is a modern, comprehensive reference work on catalysis in electrochemistry, including principles, methods, strategies, and applications. It points out differences between catalysis at gas/surfaces and electrochemical interfaces, along with the future possibilities and impact of electrochemical science on energy problems. This book contributes both to fundamental science; experience in the design, preparation, and characterization of electrocatalytic materials; and the industrial application of electrocatalytic materials for electrochemical reactions. This is an essential resource for scientists globally in academia, industry, and government institutions."--
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Catalysis. --- Electrocatalysis --- Nanoparticles. --- Surface chemistry. --- Catalyse --- Electrocatalyse --- Nanoparticules --- Chimie des surfaces
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Topics in Number 50 include: ¢ Investigation of alloy cathode Electrocatalysts ¢ A model Hamiltonian that incorporates the solvent effect to gas-phase density functional theory (DFT) calculations ¢ DFT-based theoretical analysis of ORR mechanisms ¢ Structure of the polymer electrolyte membranes (PEM) ¢ ORR investigated through a DFT-Green function analysis of small clusters ¢ Electrocatalytic oxidation and hydrogenation of chemisorbed aromatic compounds on palladium Electrodes ¢ New models that connect the continuum descriptions with atomistic Monte Carlo simulations ¢ ORR reaction in acid revisited through DFT studies that address the complexity of Pt-based alloys in electrocatalytic processes ¢ Use of surface science methods and electrochemical techniques to elucidate reaction mechanisms in electrocatalytic processes ¢ In-situ synchrotron spectroscopy to analyze electrocatalysts dispersed on nanomaterials From reviews of previous volumes: Continues the valuable service that has been rendered by the Modern Aspects series. Journal of Electroanalytical Chemistry Extremely well-referenced and very readable.... Maintains the overall high standards of the series. Journal of the American Chemical Society
Electrocatalysis. --- Electrocatalysis --- Electrocatalyse --- Experiments --- Case studies --- Research --- Expériences --- Cas, Etudes de --- Recherche --- Expériences --- EPUB-LIV-FT LIVCHIMI SPRINGER-B
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Electrocatalysis. --- Fuel cells. --- Solid-liquid interfaces. --- Electrocatalyse --- Piles à combustible --- Interfaces solide-liquide --- Relation between energy and economics --- Electrical engineering --- Electrochemistry --- Piles à combustible
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Topics in Number 51 include: · Temperature effects on platinum single-crystal and aqueous solution interphases · Surface thermodynamics of the metal and solution interface · XAS investigations of PEM fuel cells · Palladium-Based electrocatalysts required for alcohol oxidation in direct alcohol fuel cells · Structure and Reactivity of transition metal chalcogenides used for molecular oxygen reduction reactions · Proton conductivity and electrocatalysis in high temperature PEM fuel cells From reviews of previous volumes: This long-standing series continues its tradition of offering high quality reviews of established and emerging subject areas, together with the less common aspects of electrochemical science... [and]... deserves a place in electrochemistry libraries and should prove useful to electrochemists and related workers. Chemistry and Industry Continues the valuable service that has been rendered by the Modern Aspects series. Journal of Electroanalytical Chemistry Will definitely be of much use to researchers in the field of electrochemistry. . . . The editors of this well-produced volume deserve all appreciation for maintaining the excellent standard of the series. Bulletin of Electrochemistry Extremely well-referenced and very readable.... Maintains the overall high standards of the series. Journal of the American Chemical Society
biotechnologie --- biochemie --- Biotechnology --- Enzymology --- katalyse --- elektrochemie --- energietechniek --- Chemical thermodynamics --- Electrochemistry --- Relation between energy and economics --- Electrocatalysis --- Interfaces (Physical sciences) --- Electrocatalyse --- Interfaces (Sciences physiques) --- EPUB-LIV-FT LIVCHIMI SPRINGER-B
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Topics in Number 50 include: • Investigation of alloy cathode Electrocatalysts • A model Hamiltonian that incorporates the solvent effect to gas-phase density functional theory (DFT) calculations • DFT-based theoretical analysis of ORR mechanisms • Structure of the polymer electrolyte membranes (PEM) • ORR investigated through a DFT-Green function analysis of small clusters • Electrocatalytic oxidation and hydrogenation of chemisorbed aromatic compounds on palladium Electrodes • New models that connect the continuum descriptions with atomistic Monte Carlo simulations • ORR reaction in acid revisited through DFT studies that address the complexity of Pt-based alloys in electrocatalytic processes • Use of surface science methods and electrochemical techniques to elucidate reaction mechanisms in electrocatalytic processes • In-situ synchrotron spectroscopy to analyze electrocatalysts dispersed on nanomaterials From reviews of previous volumes: “Continues the valuable service that has been rendered by the Modern Aspects series.” —Journal of Electroanalytical Chemistry “Extremely well-referenced and very readable.... Maintains the overall high standards of the series.” —Journal of the American Chemical Society.
Solid state physics --- Chemical thermodynamics --- Electrochemistry --- Surface chemistry --- Enzymology --- Electrical engineering --- katalyse --- legeringen --- nanotechniek --- fysica --- fysicochemie --- elektrochemie --- Electrocatalysis. --- Electrocatalysis --- Electrocatalyse --- Experiments --- Case studies --- Research --- Expériences --- Cas, Etudes de --- Recherche --- EPUB-LIV-FT LIVCHIMI SPRINGER-B
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The book systematically summarizes the development of CO₂ photo- and electro-conversion and utilization, especially the reaction mechanism, engineering and technology of testing, and preparation methods and physicochemical properties of various catalytic materials. The rational design and preparation of catalysts, development of characterization technologies, and in-depth understanding of catalytic mechanisms are systematically discussed. In particular, the various parameters influencing the photocatalytic and electrochemical CO2 reduction are emphasized. The underlying challenges and perspectives for the future development of efficient catalysts for CO2 reduction to specific chemicals and fuels are discussed at the end of the text.
Carbon dioxide. --- Carbon dioxide --- Electrochemistry. --- Electrocatalysis. --- Photocatalysis. --- Carbon sequestration. --- Chemistry, Technical. --- Dioxyde de carbone. --- Dioxyde de carbone --- Captage et stockage du dioxyde de carbone. --- Électrochimie. --- Chimie industrielle. --- Génie chimique. --- Électrocatalyse. --- Photocatalyse. --- Utilization --- Utilisation.
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This book introduces the main aspects of modern applied electrochemistry. Starting with the basics of electrochemical kinetics, the authors address the chemistry and types of corrosion, principles of electro- and biocatalysis, electrodeposition and its applications in industrial processes. The book later discusses the electrochemistry and photoelectrochemistry of semiconductors and their applications in solar energy conversion and photocatalysis.
Electrochemistry --- Electrocatalysis --- Photocatalysis --- Bioelectrochemistry --- Energy storage --- Solar energy --- Électrochimie --- Bioélectrochimie --- Électrocatalyse --- Photocatalyse --- Énergie --- Énergie solaire --- Study and teaching (Higher) --- Étude et enseignement (supérieur) --- Stockage --- Étude et enseignement (supérieur) --- Électrochimie --- Bioélectrochimie --- Électrocatalyse --- Énergie --- Énergie solaire --- Étude et enseignement (supérieur)
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