Publication | Closed Access
Highly efficient hydrogen evolution from seawater by a low-cost and stable CoMoP@C electrocatalyst superior to Pt/C
766
Citations
77
References
2017
Year
Chemical EngineeringEngineeringElectrolyzer CellEnergy ConversionEnvironmental EngineeringCommercial 20Faradaic EfficiencyHydrogen Production TechnologyCatalysisWater ElectrolyzersHydrogenChemistryWater ElectrolysisHydrogen GenerationElectrolysis Of WaterElectrochemistry
A low-cost CoMoP@C electrocatalyst exhibits high efficiency and stable HER performance superior to commercial 20% Pt/C, and can directly work in seawater for the HER with a Faradaic efficiency of 92.5%.
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2004 | 6.2K | |
2005 | 5.6K | |
2001 | 4.8K | |
2008 | 3.3K | |
2007 | 3.2K | |
2011 | 2.9K | |
2016 | 2.4K | |
2014 | 2K | |
2015 | 1.7K | |
2015 | 1.6K |
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