4.8 Review

Recent Advances in Design of Electrocatalysts for High-Current-Density Water Splitting

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Summary: In the study, atomically dispersed Ni with triple nitrogen coordination (Ni-N-3) was shown to achieve efficient hydrogen evolution reaction (HER) performance in alkaline media. These catalysts exhibited overpotentials as low as 102 and 139 mV at 10 mA cm(-2) in alkaline freshwater and seawater electrolytes, respectively, outperforming previously reported results.

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Interfacial sp C-O-Mo Hybridization Originated High-Current Density Hydrogen Evolution

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Summary: The GDY/MoO3 material demonstrates efficient hydrogen evolution reaction with high-current density through rational design of sp C-O-Mo hybridization, creating new intrinsic catalytic active sites and increasing the amount of active sites. This approach allows for outstanding HER activity in alkaline electrolyte and decent activity and stability in natural seawater.

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Stabilized hydroxide-mediated nickel-based electrocatalysts for high-current-density hydrogen evolution in alkaline media

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