Herein we report a 3D heterostructure comprising a hierarchical macroporous carbon foam that incorporates mesoporous carbon nanotubes decorated with cobalt oxide nanoparticles as an unique and highly efficient electrode material for the oxygen evolution reaction (OER) in electrocatalytic water splitting. The best performing electrode material showed high stability after 10 h, at constant potential of 1.7 V vs. RHE (reversible hydrogen electrode) in a 0.1 M KOH solution and high electrocatalytic activity in OER with low overpotential (0.38 V vs RHE at 10 mA cm(-2)). The excellent electrocatalytic performance of the electrode is rationalized by the overall 3D macroporous structure and with the firmly integrated CNTs directly grown on the foam...
Electrolysis is the most mature form of hydrogen production. Unfortunately, water electrolysis has n...
Oxygen evolution reaction (OER) has significant impact on the overall electrochemical water splittin...
Water is the renewable, bulk chemical that nature uses to enable carbohydrate production from carbon...
Herein we report a 3D heterostructure comprising a hierarchical macroporous carbon foam that incorpo...
In this study, we report a 3D structured carbon foam electrode assembled from a bi-functional NiCo c...
Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic materi...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The development of new materials/structures for efficient electrocatalytic water oxidation, which is...
Highly efficient and low-cost electrocatalysts are essential for water spitting via electrolysis in ...
Developing a scalable approach to construct efficient and multifunctional electrodes for the hydroge...
The electrolysis of water to produce hydrogen and oxygen is a simple and attractive approach to stor...
Efficiency of hydrogen evolution via water electrolysis is mainly impeded by the kinetically sluggis...
Electrochemical splitting of water is an attractive way to produce hydrogen fuel as a clean and rene...
The development of an efficient catalytic electrode toward both hydrogen evolution reaction (HER) an...
Electrolysis is the most mature form of hydrogen production. Unfortunately, water electrolysis has n...
Oxygen evolution reaction (OER) has significant impact on the overall electrochemical water splittin...
Water is the renewable, bulk chemical that nature uses to enable carbohydrate production from carbon...
Herein we report a 3D heterostructure comprising a hierarchical macroporous carbon foam that incorpo...
In this study, we report a 3D structured carbon foam electrode assembled from a bi-functional NiCo c...
Water is the most abundant, renewable source of hydrogen on our planet. Appropriate catalytic materi...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The stability of electrocatalysts grown on substrates is a significant challenge for the constructio...
The development of new materials/structures for efficient electrocatalytic water oxidation, which is...
Highly efficient and low-cost electrocatalysts are essential for water spitting via electrolysis in ...
Developing a scalable approach to construct efficient and multifunctional electrodes for the hydroge...
The electrolysis of water to produce hydrogen and oxygen is a simple and attractive approach to stor...
Efficiency of hydrogen evolution via water electrolysis is mainly impeded by the kinetically sluggis...
Electrochemical splitting of water is an attractive way to produce hydrogen fuel as a clean and rene...
The development of an efficient catalytic electrode toward both hydrogen evolution reaction (HER) an...
Electrolysis is the most mature form of hydrogen production. Unfortunately, water electrolysis has n...
Oxygen evolution reaction (OER) has significant impact on the overall electrochemical water splittin...
Water is the renewable, bulk chemical that nature uses to enable carbohydrate production from carbon...