© The Royal Society of Chemistry 2015. The design of highly efficient, robust and earth-abundant electrocatalysts for the oxygen evolution reaction (OER) is a prodigious challenge for the rapid growth of global energy demand. Herein, an active catalyst composed of porous graphene and cobalt oxide (PGE-CoO) has been synthesized, demonstrating high porosity, large specific surface area and fast charge transport kinetics. The catalyst also exhibits excellent electrochemical performance towards OER with a low onset potential and high catalytic current density. The enhanced catalytic activity could be ascribed to porous structure, high electroactive surface area and strong chemical coupling between graphene and CoO nanoparticles. Moreover, this ...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
The design of highly efficient, robust and earth-abundant electrocatalysts for the oxygen evolution ...
Graphene-CoO composite with a unique sandwich-architecture was successfully synthesized and applied ...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Graphene-Co3O4 composite with a unique sandwich-architecture was successfully synthesized and applie...
Co<sub>3</sub>O<sub>4</sub> nanosheets with a graphene-like holey structure are successfully synthes...
FeCo-based materials are promising candidates as efficient, affordable, and sustainable electrocatal...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
The design of highly efficient, robust and earth-abundant electrocatalysts for the oxygen evolution ...
Graphene-CoO composite with a unique sandwich-architecture was successfully synthesized and applied ...
The industrial application of water splitting for oxygen evolution requires low cost, high performan...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Electrochemical water splitting is a process to store renewable energy in hydrogen, which is a green...
Graphene-Co3O4 composite with a unique sandwich-architecture was successfully synthesized and applie...
Co<sub>3</sub>O<sub>4</sub> nanosheets with a graphene-like holey structure are successfully synthes...
FeCo-based materials are promising candidates as efficient, affordable, and sustainable electrocatal...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...
Co3O4 nanosheets with a graphene-like holey structure are successfully synthesized through a bottom-...