Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution reaction (HER) and the oxygen evolution reaction (OER) using the same electrolyte has remained a major challenge. Herein, we report a novel and robust material comprised of nickel–cobalt nanoparticles coated on a porous nitrogen-doped carbon (NC) thin film synthesized via a two-step pulsed laser deposition technique. The optimized sample (Ni0.5Co0.5/NC) achieved the lowest overpotentials of 176 mV and 300 mV at a current density of 10 mA cm−2 for HER and OER, respectively. The optimized OER activity might be attributed to the available metal oxide nanoparticles with an effective electronic structure configuration and enhanced mass/charge transpo...
Identification of efficient non-precious metal catalysts for the oxygen evolution reaction (OER) re...
Identification of efficient non-precious metal catalysts for the oxygen evolution reaction (OER) re...
Chemical waste-free, in situ synthesis of customized earth-abundant-metal based catalysts for high-e...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Nowadays, energy is one of the most important challenges facing mankind due to its supply and demand...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
Due to depleting fossil fuels and climate changes, research efforts have been put into exploring low...
Electrochemical water splitting has become increasingly important in energy-related applications. Es...
Electrochemical water splitting has become increasingly important in energy-related applications. Es...
Identification of efficient non-precious metal catalysts for the oxygen evolution reaction (OER) re...
Identification of efficient non-precious metal catalysts for the oxygen evolution reaction (OER) re...
Chemical waste-free, in situ synthesis of customized earth-abundant-metal based catalysts for high-e...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Developing low cost, highly active and stable electrocatalysts for both the hydrogen evolution react...
Nowadays, energy is one of the most important challenges facing mankind due to its supply and demand...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
The development of efficient, eco-friendly, and inexpensive electrocatalysts has become crucial and ...
Due to depleting fossil fuels and climate changes, research efforts have been put into exploring low...
Electrochemical water splitting has become increasingly important in energy-related applications. Es...
Electrochemical water splitting has become increasingly important in energy-related applications. Es...
Identification of efficient non-precious metal catalysts for the oxygen evolution reaction (OER) re...
Identification of efficient non-precious metal catalysts for the oxygen evolution reaction (OER) re...
Chemical waste-free, in situ synthesis of customized earth-abundant-metal based catalysts for high-e...