Iron cobalt oxides, such as typical FeCo2O4 and CoFe2O4, are two spinel structured transitional metal oxide materials with excellent electrochemical performance. As the electrodes, they have been widely applied in the current energy storage and conversion processes such as supercapacitors, Lithium-ion batteries and fuel cells. Based on synthesis approaches and controlled conditions, these two materials exhibited broad morphologies and nanostructures and thus distinct electrochemical performance. Some of them have shown promising applications as electrodes in energy storage and conversion. The incorporation with other materials to form composites further improved their performance. This review briefly summarized the recent applications of Fe...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Metal oxides are being used for various applications, such as batteries, supercapacitors, and cataly...
Optimization of electrodes for charge storage with appropriate processing conditions places signific...
Iron cobalt oxides, such as typical FeCo2O4 and CoFe2O4, are two spinel structured transitional meta...
Supercapacitors, as promising energy storage devices, have been of interest for their long lifespan ...
For a nation to move closer to clean energy uses in daily life, solar and wind energy must be stored...
To contribute to solving global energy problems, a multifunctional CoFe2O4 spinel was synthesized an...
FeCo2O4 spinel oxide pelleted electrodes were prepared from the respective powders, obtained by low-...
Metal oxides are being used for various applications such as batteries, supercapacitors, and catalys...
Mesoporous spinel cobalt ferrite (CoFe2O4) nanostructures were synthesized via a facile Al2O3-assist...
In this study, hydrothermally produced Fe-doped Co3O4 nanostructured particles are investigated as e...
Iron oxide nanostructures have been considered very promising material as electrode in electrochemic...
In the present work, cobalt oxide (Co3O4) electrodes of different morphologies are synthesized onto ...
Spinel-type oxides containing cobalt and iron have been intensively investigated in recent years due...
Co3O4 spinel type nanoparticles (5–10 nm) were synthesized by oxidizing precipitation in various bas...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Metal oxides are being used for various applications, such as batteries, supercapacitors, and cataly...
Optimization of electrodes for charge storage with appropriate processing conditions places signific...
Iron cobalt oxides, such as typical FeCo2O4 and CoFe2O4, are two spinel structured transitional meta...
Supercapacitors, as promising energy storage devices, have been of interest for their long lifespan ...
For a nation to move closer to clean energy uses in daily life, solar and wind energy must be stored...
To contribute to solving global energy problems, a multifunctional CoFe2O4 spinel was synthesized an...
FeCo2O4 spinel oxide pelleted electrodes were prepared from the respective powders, obtained by low-...
Metal oxides are being used for various applications such as batteries, supercapacitors, and catalys...
Mesoporous spinel cobalt ferrite (CoFe2O4) nanostructures were synthesized via a facile Al2O3-assist...
In this study, hydrothermally produced Fe-doped Co3O4 nanostructured particles are investigated as e...
Iron oxide nanostructures have been considered very promising material as electrode in electrochemic...
In the present work, cobalt oxide (Co3O4) electrodes of different morphologies are synthesized onto ...
Spinel-type oxides containing cobalt and iron have been intensively investigated in recent years due...
Co3O4 spinel type nanoparticles (5–10 nm) were synthesized by oxidizing precipitation in various bas...
Cobalt oxides have been extensively used as conductive additives for Ni-MH batteries. We report in t...
Metal oxides are being used for various applications, such as batteries, supercapacitors, and cataly...
Optimization of electrodes for charge storage with appropriate processing conditions places signific...