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This dissertation by Zhixing Wu focuses on the development and study of mesoporous transition metal oxides for use in oxygen-related reactions within energy conversion technologies. The research aims to create cost-effective and abundant materials as alternatives to platinum-group metals, which are expensive and scarce. The study investigates the electrocatalytic properties of various metal oxides, including nickel, cobalt, and chromium oxides, in processes like the oxygen reduction reaction (ORR) and the oxygen evolution reaction (OER). The dissertation highlights the synthesis methods, performance, and optimization of these materials for potential applications in sustainable energy technologies such as electrolyzers, fuel cells, and metal-air batteries. The intended audience includes researchers and professionals in the fields of material science, chemistry, and sustainable energy technology.
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In this book the author presents an up-to-date summary of existing information on the structure, electronic properties, chemistry and catalytic properties of transition metal oxides. The subjects covered in the book can be divided into three sections. The first (chapters 1 to 3) covers the structural, physical, magnetic, and electronic properties of transition metal oxides. Although the emphasis is on surface properties, relevant bulk properties are also discussed. The second section (chapters 4 to 7) covers surface chemical properties. It includes topics that describe the importance of surf
Surface chemistry --- Catalysis --- Transition metal oxides --- Catalysis. --- Surface chemistry. --- Transition metal oxides.
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This book is aimed at advanced undergraduates, graduate students and other researchers who possess an introductory background in materials physics and/or chemistry, and an interest in the physical and chemical properties of novel materials, especially transition metal oxides.New materials often exhibit novel phenomena of great fundamental and technological importance. Contributing authors review the structural, physical and chemical properties of notable 4d- and 5d-transition metal oxides discovered over the last 10 years. These materials exhibit extraordinary physical properties that differ
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Relativity (Physics) --- Black holes (Astronomy) --- Cosmology --- Calculus of tensors --- Transition metal oxides.
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