The development of low-cost, efficient, and robust electrocatalysts of the hydrogen evolution reaction (HER) is a crucial step toward the conversion and storage of sustainable and carbon-neutral energy resources, such as solar energy. Not only the HER catalysts need to be composed of inexpensive elements, they are also desirable to be prepared at low energy cost. In this work, we report that nickel-sulfide (Ni-S) films prepared by facile potentiodynamic deposition are active HER catalysts in aqueous media. Notably, the Ni-S films showed catalytic activity in water with a wide range of pH values (0 to 14), as well as in natural water. In pH 7 phosphate buffer, a current density of 60 mA cm-2 could be achieved with a Tafel slope of 77 mV dec-...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Transition metal sulfides show great promise for applications ranging from catalysis to electrocatal...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
© 2020 Elsevier Ltd Developing cost-effective electrocatalysts for electrochemical water splitting (...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
A novel Ni-Co-S-based material prepared by the potentiodynamic deposition from an aqueous solution c...
Low-cost preparation of high-efficiency electrocatalysts is challenging the development of electroca...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
Fabrication of high-performance noble-metal-free bifunctional electrocatalysts for both hydrogen evo...
Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Transition metal sulfides show great promise for applications ranging from catalysis to electrocatal...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
Hydrogen, when generated directly from water with renewal energy input, is a promising energy carrie...
© 2020 Elsevier Ltd Developing cost-effective electrocatalysts for electrochemical water splitting (...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
A novel Ni-Co-S-based material prepared by the potentiodynamic deposition from an aqueous solution c...
Low-cost preparation of high-efficiency electrocatalysts is challenging the development of electroca...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
To relieve our strong reliance on fossil fuels and to reduce greenhouse effects, there is an ever-gr...
Fabrication of high-performance noble-metal-free bifunctional electrocatalysts for both hydrogen evo...
Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under...
Oxygen evolution catalysts made out of a metal (Ni, Co, or Fe) and a pnictide or chalcogenide (P, S,...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...
Transition metal sulfides show great promise for applications ranging from catalysis to electrocatal...
Solar-driven water splitting to produce hydrogen and oxygen is widely considered as a sustainable ap...