Transition metal dichalcogenides have been widely studied as active electrocatalysts for hydrogen evolution reactions. However, their properties as oxygen evolution reaction catalysts have not been fully explored. In this study, we systematically investigate a family of transition metal dichalcogenides (MX, M = Co, Ni, Fe; X = S, Se, Te) as candidates for water oxidation. It reveals that the transition metal dichalcogenides are easily oxidized in strong alkaline media via an in situ electrochemical oxidation process, producing nanoporous transition metal oxides toward much enhanced water oxidation activity due to their increased surface area and more exposed electroactive sites. The optimal cobalt nickel iron oxides that derived from their ...
Developing an efficient and economical electrocatalyst for oxygen evolution reaction is the key chal...
The use of hydrogen gas produced by the electrolysis of water is the basis of a long term energy con...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
The development of catalysts with earth-abundant elements for efficient oxygen evolution reactions i...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
The oxygen evolution reaction (OER) limits the energy efficiency of electrocatalytic systems due to ...
Basic insight into the structural evolution of electrocatalysts under operating conditions is of sub...
Water splitting has received more and more attention because of its huge potential to generate clean...
As one of the most remarkable oxygen evolution reaction (OER) electrocatalysts, metal chalcogenides ...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Binder-free nickel sulfide material grown on NF (NiS/NF) by a basic thermal sulfur growth mechanic w...
Oxygen evolution catalysts composed of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
The bottleneck of large-scale implementation of electrocatalytic water-splitting technology lies in ...
Transition metal chalcogenides have emerged as unique electrocatalysts for the oxygen evolution reac...
The large-scale application of water electrolysis for the generation of hydrogen can be made viable ...
Developing an efficient and economical electrocatalyst for oxygen evolution reaction is the key chal...
The use of hydrogen gas produced by the electrolysis of water is the basis of a long term energy con...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...
The development of catalysts with earth-abundant elements for efficient oxygen evolution reactions i...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
The oxygen evolution reaction (OER) limits the energy efficiency of electrocatalytic systems due to ...
Basic insight into the structural evolution of electrocatalysts under operating conditions is of sub...
Water splitting has received more and more attention because of its huge potential to generate clean...
As one of the most remarkable oxygen evolution reaction (OER) electrocatalysts, metal chalcogenides ...
Water electrolysis to generate hydrogen and oxygen at low overpotential is one of the main requireme...
Binder-free nickel sulfide material grown on NF (NiS/NF) by a basic thermal sulfur growth mechanic w...
Oxygen evolution catalysts composed of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
The bottleneck of large-scale implementation of electrocatalytic water-splitting technology lies in ...
Transition metal chalcogenides have emerged as unique electrocatalysts for the oxygen evolution reac...
The large-scale application of water electrolysis for the generation of hydrogen can be made viable ...
Developing an efficient and economical electrocatalyst for oxygen evolution reaction is the key chal...
The use of hydrogen gas produced by the electrolysis of water is the basis of a long term energy con...
The development of efficient electrocatalysts to lower the overpotential of oxygen evolution reactio...