Phase-controlled synthesis of starch-derived Mo2C–MoC/C heterostructure catalyst for electrocatalytic hydrogen evolution reaction
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Elsevier BV
Reference58 articles.
1. Unraveling the mechanisms of electrocatalytic Oxygenation and dehydrogenation of organic molecules to value‐added chemicals over a Ni–Fe oxide catalyst;Mondal;Adv Energy Mater,2021
2. One nanometer ptir nanowires as high-efficiency bifunctional catalysts for electrosynthesis of ethanol into high value-added multicarbon compound coupled with hydrogen production;Yin;J Am Chem Soc,2021
3. Recent development in electrocatalysts for hydrogen production through water electrolysis;Anwar;Int J Hydrogen Energy,2021
4. Earth-abundant inorganic electrocatalysts and their nanostructures for energy conversion applications;Faber;Energy Environ Sci,2014
5. Amorphous cobalt–iron hydroxides as high-efficiency oxygen-evolution catalysts based on a facile electrospinning process;Guo;Inorg Chem Front,2019
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1. Unlocking high-performance hydrogen evolution: Argon-induced Ni segregation in NiO/TiO2 of core/shell catalysts;International Journal of Hydrogen Energy;2024-10
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