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[1]In situ ammonium formation mediates efficient hydrogen production from natural seawater splitting:Nat. Commun.,2024,15):9462.
[2]Black Phosphorous Mediates Surface Charge Redistribution of CoSe2 for Electrochemical H2O2 Production in Acidic Electrolytes:Adv. Mater.,2022,34(43):2205414.
[3]Monitoring oxygen production on mass-selected iridium–tantalum oxide electrocatalysts:Nat. Energy,2022,7):55-64.
[4]Origins of the instability of nonprecious hydrogen evolution reaction catalysts at open-circuit potential:ACS Energy Lett.,2021,6(6):2268-2274.
[5]Acid-stable oxides for oxygen electrocatalysis:ACS Energy Lett.,2020,5(9):2905-2908.
[6]Polymorphic cobalt diselenide as extremely stable electrocatalyst in acidic media via a phase-mixing strategy:Nat. Commun.,2019,10):5338.
[7]Doping-induced structural phase transition in cobalt diselenide enables enhanced hydrogen evolution catalysis:Nat. Commun.,2018,9):2533.
[8]Cobalt diselenide nanobelts grafted on carbon fiber felt: an efficient and robust 3D cathode for hydrogen production:Chem. Sci.,2015,6):4594-4598.
[9]Carbon-supported PtCo2Ni2 alloy with enhanced activity and stability for oxygen reduction:Sci. China Mater.,2015,58):179-185.
[10]An efficient molybdenum disulfide/cobalt diselenide hybrid catalyst for electrochemical hydrogen generation:Nat. Commun.,2015,6):5982.
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