Herein we have shown that electrodeposited NiSe2 can be used as a bifunctional electrocatalyst under alkaline conditions to split water at very low potential by catalyzing both oxygen evolution and hydrogen evolution reactions at anode and cathode, respectively, achieving a very high electrolysis energy efficiency exceeding 80% at considerably high current densities (100 mA cm-2). The OER catalytic activity as well as electrolysis energy efficiency surpasses any previously reported OER electrocatalyst in alkaline medium and energy efficiency of an electrolyzer using state-of-the-art Pt and RuO2 as the HER and OER catalyst, respectively. Through detailed electrochemical and structural characterization, we have shown that the enhanced catalyt...
Developing Protocols for Designing High-Efficiency, Durable, Cost-Effective Electrocatalysts for Oxy...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
A metal-rich form of Ni-selenide, nickel subselenide, Ni3Se2 has been investigated as a potential ox...
Electrocatalysts for oxygen evolution reaction (OER) has been at the center of attention for water s...
Electrochemical water splitting is one of the most promising ways for clean hydrogen energy producti...
In this contribution, we demonstrate that electrodeposited nickel diselenide nanoparticles based fil...
Electrochemical water splitting is one of the most promising ways for clean hydrogen energy producti...
Herein a facile synthesis methodology is reported that results in a unique 3D NiSe@Ni1−xFexSe2 core–...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Transition-metal-based electrocatalysts containing chalcogenides (S and Se) or phosphorous have bee...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Designing an effective, stabilized catalyst is a key challenge to water splitting for both 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...
Developing Protocols for Designing High-Efficiency, Durable, Cost-Effective Electrocatalysts for Oxy...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
A metal-rich form of Ni-selenide, nickel subselenide, Ni3Se2 has been investigated as a potential ox...
Electrocatalysts for oxygen evolution reaction (OER) has been at the center of attention for water s...
Electrochemical water splitting is one of the most promising ways for clean hydrogen energy producti...
In this contribution, we demonstrate that electrodeposited nickel diselenide nanoparticles based fil...
Electrochemical water splitting is one of the most promising ways for clean hydrogen energy producti...
Herein a facile synthesis methodology is reported that results in a unique 3D NiSe@Ni1−xFexSe2 core–...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Transition-metal-based electrocatalysts containing chalcogenides (S and Se) or phosphorous have bee...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Developing high-active and low-cost bifunctional materials for catalyzing hydrogen evolution reactio...
Designing an effective, stabilized catalyst is a key challenge to water splitting for both 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...
Developing Protocols for Designing High-Efficiency, Durable, Cost-Effective Electrocatalysts for Oxy...
Rational design of non-noble metal electrocatalysts with high intrinsic activity for both the oxygen...
A metal-rich form of Ni-selenide, nickel subselenide, Ni3Se2 has been investigated as a potential ox...