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Selective Methanol-to-Formate Electrocatalytic Conversion on Branched Nickel Carbide
Authors:Dr Junshan Li  Ruilin Wei  Xiang Wang  Yong Zuo  Xu Han  Prof Jordi Arbiol  Prof Jordi Llorca  Prof Yaoyue Yang  Prof Andreu Cabot  Prof Chunhua Cui
Institution:1. Molecular Electrochemistry Laboratory, Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, 610054 Chengdu, P. R. China;2. School of Chemistry and Environment, Southwest Minzu University, 610041 Chengdu, P. R. China;3. Catalonia Institute for Energy Research—IREC, Sant Adrià de Besòs, 08930 Barcelona, Spain;4. Catalan Institute of Nanoscience and Nanotechnology (ICN2), CSIC and BIST, Campus UAB, Bellaterra, 08193 Barcelona, Spain;5. Institute of Energy Technologies, Department of Chemical Engineering and Barcelona Research Center in Multiscale Science and Engineering, Universitat Politècnica de Catalunya, EEBE, 08019 Barcelona, Spain
Abstract:A methanol economy will be favored by the availability of low-cost catalysts able to selectively oxidize methanol to formate. This selective oxidation would allow extraction of the largest part of the fuel energy while concurrently producing a chemical with even higher commercial value than the fuel itself. Herein, we present a highly active methanol electrooxidation catalyst based on abundant elements and with an optimized structure to simultaneously maximize interaction with the electrolyte and mobility of charge carriers. In situ infrared spectroscopy combined with nuclear magnetic resonance spectroscopy showed that branched nickel carbide particles are the first catalyst determined to have nearly 100 % electrochemical conversion of methanol to formate without generating detectable CO2 as a byproduct. Electrochemical kinetics analysis revealed the optimized reaction conditions and the electrode delivered excellent activities. This work provides a straightforward and cost-efficient way for the conversion of organic small molecules and the first direct evidence of a selective formate reaction pathway.
Keywords:branched particles  formic acid  in situ infrared spectroscopy  methanol oxidation  nickel carbide
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