Self-Supported Polyhedral-like Co<sub>3</sub>S<sub>4</sub> Nanostructures Enabling Efficient High Current Hydrogen Evolution Reaction. [PDF]
Ahmed ATA +4 more
europepmc +1 more source
Sulfur-mediated transformation from osmium nanocrystals to single atoms for efficient alkaline hydrogen evolution reaction. [PDF]
Xue W +14 more
europepmc +1 more source
Multilayered Ti<sub>3</sub>C<sub>2</sub>T<sub>x</sub> MXene as a highly active electrocatalyst for hydrogen evolution reaction. [PDF]
Ragunath BS +5 more
europepmc +1 more source
Magnetic Field-Driven Interface Hydroxylation via the Vibrational Stark Effect Boosts Alkaline Hydrogen Evolution Reaction. [PDF]
Yao X +6 more
europepmc +1 more source
A Perovskite Electrocatalyst for Efficient Hydrogen Evolution Reaction [PDF]
Perovskite oxides are demonstrated for the first time as efficient electrocatalysts for the hydrogen evolution reaction (HER) in alkaline solutions. A-site praseodymium-doped Pr0.5 (Ba0.5 Sr0.5 )0.5 Co0.8 Fe0.2 O3- δ (Pr0.5BSCF) exhibits dramatically enhanced HER activity and stability compared to Ba0.5 Sr0.5 Co0.8 Fe0.2 O3- δ (BSCF), superior to many ...
Xiaomin Xu, Yubo Chen, Wei Zhou
exaly +6 more sources
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Nanocatalysts for hydrogen evolution reactions
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Strain engineering of electrocatalysts for hydrogen evolution reaction
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Intensifying Hydrogen Spillover for Boosting Electrocatalytic Hydrogen Evolution Reaction
The Chemical Record, 2022AbstractHydrogen spillover has attracted increasing interests in the field of electrocatalytic hydrogen evolution reaction (HER) in recent years because of their distinct reaction mechanism and beneficial terms for simultaneously weakening the strong hydrogen adsorption on metal and strengthening the weak hydrogen adsorption on support.
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Modulation of Phosphorene for Optimal Hydrogen Evolution Reaction
ACS Applied Materials & Interfaces, 2019Economical and highly effective catalysts are crucial to the electrocatalytic hydrogen evolution reaction (HER), and few-layer black phosphorus (phosphorene) is a promising candidate because of the high carrier mobility, large specific surface area, and tunable physicochemical characteristics.
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Pristine Graphene Electrode in Hydrogen Evolution Reaction
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