图书简介
With interdisciplinary perspectives from internationally renowned experts, Noble-Metal-Free Electrocatalysts for Hydrogen Energy is one of the most authoritative references to focus solely on state-of-the-art knowledge of noble-metal-free electrocatalysts, their nanostructures and unique properties, and the cutting-edge breakthroughs, horizons, and insights into functional materials for energy applications.This book contains over three thousand references and two hundred figures, and is a highly valuable resource for scientists, students, and engineers working in the fields of electrochemistry, catalysis, fuel cells, batteries, and supercapacitors.Key FeatureAn authoritative reference that should stand out amongst the competition
Preface (Qingsheng Gao and Lichun Yang); Elementary Knowledge and Evaluation Criteria of Hydrogen and Oxygen Evolution Reactions (Dan Li, Qingsheng Gao and Lin Ma); Noble-Metal-Free Electrocatalysts for Water Splitting - Metal Chalcogenides (Daniel Siegmund and Ulf-Peter Apfel); Layered Transition Metal Disulfide Catalysts for Electrocatalytic Hydrogen Evolution Reaction (Lin Ma, Limei Xu, Thitima Rujiralai, Xiaoping Zhou and Xuyao Xu); Alkaline Water Splitting by Metal Chalcogenide Based Electrocatalysts (Arumugam Sivanantham and Sangaraju Shanmugam); Structural Design of Nanostructured Nickel Sulfides toward Hydrogen and Oxygen Evolution Reactions (Liuqing He, Qijie Mo, and Qingsheng Gao); Tuning Nanoarchitecture and Electronic Configuration of Transition Metal Phosphides towards Water Splitting (Qijie Mo, Etogo Christian Atangana, Qingsheng Gao, Lei Zhang); Molybdenum Carbide Nanostructures for Electrocatalytic Hydrogen Evolution Reaction (Sinong Wang); Hetero-Atom Doping into Metal Carbides toward Efficient Hydrogen Evolution Reactions (Xing Yin and Qingsheng Gao); Heterostructures of Transition-Metal-Carbides as Efficient Electrocatalysts for Hydrogen Evolution Reactions (Wenbiao Zhang and Qingsheng Gao); Heteroatom(s)-Doped Carbons as Metal-free Electrocatalysts for Oxygen Reduction Reaction (Yuying Meng); Single-Atom Catalysts for Electrocatalytic Oxygen Reduction Reactions (Zhaojie Li and Qingsheng Gao); Synthesis Strategies, Characterizations and Catalytic Mechanisms of Fe-N-0C Electrocatalysts for Cathodic Oxygen Reduction Reaction in Fuel Cells (Xiang-Hui Yan, Hao Xu); A Mini-Review on High-Efficiency Nanocatalysts for Electrocatalytic Oxidation of Methanol and Ethanol (Yang Yang and Qingsheng Gao)
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