Cauliflower-like Co–B–P ternary catalyst loaded on graphitic carbon nitride nanosheets with synergistically enhanced electrocatalytic activity for hydrogen evolution reaction
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Elsevier BV
Reference76 articles.
1. A comprehensive review on the electrochemical parameters and recent material development of electrochemical water splitting electrocatalysts;Raveendran;RSC Adv,2023
2. Exploration of catalytically active materials for efficient electrochemical hydrogen and oxygen evolution reactions;Iqbal;Int J Hydrogen Energy,2023
3. Recent progress on design and applications of transition metal chalcogenide-associated electrocatalysts for the overall water splitting;Su;Chin J Catal,2023
4. In situ unraveling surface reconstruction of Ni5P4@FeP nanosheet array for superior alkaline oxygen evolution reaction;Li;Appl Catal, B,2022
5. Exploring the future of 2D catalysts for clean and sustainable hydrogen production;Shanmughan;Int J Hydrogen Energy,2023
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1. NiCoP fibers as novel catalysts for hydrogen evolution in alkali and acidic environment;International Journal of Hydrogen Energy;2024-03
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