Water electrolysis offers a promising approach toward future sustainable energy mix utilizing hydrogen as energy carrier. Bifunctional catalyst which is active in both oxygen and hydrogen evolution reactions can significantly enhance total electrochemical water splitting efficiency and simplify electrolysis systems. In this study, nitrogen doped nickel-containing porous carbon networks were prepared to fulfill this role. Peptone was used as carbon and nitrogen source during the synthesis and NaCl presence as a template resulted in the formation of open mesopores interconnected by thin carbon sheets with nanosized Ni particles encapsulated in the carbon matrix. A low onset potential of 53 mV and a charge transfer resistance of 3.8 Ω with exc...
Electrochemical splitting of water has been viewed as a highly efficient technique to produce clean ...
Electrochemical splitting of water has been viewed as a highly efficient technique to produce clean ...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Development of easy-to-make, highly active, and stable bifunctional electrocatalysts for water split...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
[EN] Alkaline water electrolysis is one of the easiest methods for hydrogen production, offering the...
[EN] Alkaline water electrolysis is one of the easiest methods for hydrogen production, offering the...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
In this letter, we report a facile self-foaming strategy to synthesize Ni<sub>3</sub>C nanoparticles...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Among current technologies for hydrogen production as an environmentally friendly fuel, water splitt...
High‐performance water‐splitting electrocatalysts are needed by the energy sector for sustainable hy...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Currently, hydrogen production is based on the reforming process, leading to the emission of polluta...
Electrochemical splitting of water has been viewed as a highly efficient technique to produce clean ...
Electrochemical splitting of water has been viewed as a highly efficient technique to produce clean ...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Development of easy-to-make, highly active, and stable bifunctional electrocatalysts for water split...
This is the author accepted manuscript. The final version is available from Elsevier via the DOI in ...
[EN] Alkaline water electrolysis is one of the easiest methods for hydrogen production, offering the...
[EN] Alkaline water electrolysis is one of the easiest methods for hydrogen production, offering the...
Earth-abundant and highly efficient electrocatalysts for the hydrogen evolution reaction (HER) and o...
In this letter, we report a facile self-foaming strategy to synthesize Ni<sub>3</sub>C nanoparticles...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Among current technologies for hydrogen production as an environmentally friendly fuel, water splitt...
High‐performance water‐splitting electrocatalysts are needed by the energy sector for sustainable hy...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Exploring low-cost and highly efficient non-noble bifunctional electrocatalysts with high performanc...
Currently, hydrogen production is based on the reforming process, leading to the emission of polluta...
Electrochemical splitting of water has been viewed as a highly efficient technique to produce clean ...
Electrochemical splitting of water has been viewed as a highly efficient technique to produce clean ...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...