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Titlebook: Electrocatalysis; Minhua Shao Book 2020 The Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switze

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Bimetallic Electrocatalysts for CO2 Reduction,ional fossil sources in commodity chemical production is a potential solution to reduce CO. emissions. Electrochemical reduction of CO. has attracted much attention because it not only converts CO. into a variety of useful chemicals under mild reaction conditions, but also can be powered by renewabl
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,Dispersive Single‑Atom Metals Anchored on Functionalized Nanocarbons for Electrochemical Reactions,ctions represents a burgeoning area of research, due to their unique characteristics of low coordination number, uniform coordination environment, and maximum atomic utilization. Here we highlight the advanced synthetic methods, characterization techniques, and electrochemical applications for carbo
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Dewey G. Cornell,Shelby Stohlman and Au) showing enhanced kinetics when PtML is under tensile strain on Au(111) electrode. Nanostructured electrocatalysts containing Pt–Rh solid solution on SnO2 and Pt monolayer on non-noble metals are shown, optimized, and characterized by in situ methods. Electrochemical, in situ Fourier transfo
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Philippe Lesot,Gérald Remaud,Ben-Li Zhangecent research efforts in the field of bimetallic electrocatalysts for CO. reduction, we aim to provide the community with a timely overview of the current status of bimetallic CO. electrocatalysts and to stimulate new ideas to design better catalysts for more efficient CO. electrolysis processe
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,Pt‑Based Catalysts for Electrochemical Oxidation of Ethanol, and Au) showing enhanced kinetics when PtML is under tensile strain on Au(111) electrode. Nanostructured electrocatalysts containing Pt–Rh solid solution on SnO2 and Pt monolayer on non-noble metals are shown, optimized, and characterized by in situ methods. Electrochemical, in situ Fourier transfo
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