3D mesoporous hybrid NiCo2O4@graphene nanoarchitectures were successfully synthesized by a combination of freeze drying and hydrothermal reaction. Field-emission scanning electron microscopy (FESEM) and TEM analyses revealed that the NiCo2O 4@graphene nanostructures consist of a hierarchical mesoporous sheet-on-sheet nanoarchitecture with a high specific surface area of 194 m 2 g-1. Ultrathin NiCo2O4 nanosheets, with a thickness of a few nanometers and mesopores ranging from 2 to 5 nm, were wrapped in graphene nanosheets and hybrid nanoarchitectures were formed. When applied as electrode materials in supercapacitors, the hybrid NiCo 2O4@graphene nanosheets exhibited a high capacitance of 778 F g-1 at a current density of 1 A g-1, and an exc...
Herein, we report a strategy for controlled synthesis of functional nanomaterials desired for energy...
Two one-dimensional hierarchical hybrid nanostructures composed of NiCo2O4 nanorods and ultrathin na...
In this work, a three dimensional (3D) interconnected carbon network consisting of ultrathin graphit...
The ultimate goal of supercapacitor research industries is to develop devices which could be used as...
Even though NiCo2O4 is considered to be one of the most promising materials for supercapacitor appli...
In this study, we synthesized binder-free NiCo2O4@NiCo2O4 nanostructured materials on nickel foam (N...
With increasing demand for energy and limited fossil source, there is urgency in developing high per...
© 2020 The Royal Society of Chemistry. Pseudocapacitive energy storage via Li+ storage at the surfac...
NiCo2S4 is a promising material for supercapacitors owing to its merits of high conductivity and act...
A high-performance electrode for supercapacitors is designed and synthesized by growing electroactiv...
Porous carbon-metal oxide hybrid materials are advanced functional composites with great potential f...
It is very important to design hybrid core–shell structured electrode materials to obtain superior e...
Pseudocapacitive energy storage\ua0via\ua0Li+\ua0storage at the surface/interface of the electrode i...
We report the synthesis of two-dimensional (2D) NiCo2O4 nanosheet-coated three-dimensional graphene ...
Nanostructured transition metal oxide synthesis possessing high energy density and stability is desi...
Herein, we report a strategy for controlled synthesis of functional nanomaterials desired for energy...
Two one-dimensional hierarchical hybrid nanostructures composed of NiCo2O4 nanorods and ultrathin na...
In this work, a three dimensional (3D) interconnected carbon network consisting of ultrathin graphit...
The ultimate goal of supercapacitor research industries is to develop devices which could be used as...
Even though NiCo2O4 is considered to be one of the most promising materials for supercapacitor appli...
In this study, we synthesized binder-free NiCo2O4@NiCo2O4 nanostructured materials on nickel foam (N...
With increasing demand for energy and limited fossil source, there is urgency in developing high per...
© 2020 The Royal Society of Chemistry. Pseudocapacitive energy storage via Li+ storage at the surfac...
NiCo2S4 is a promising material for supercapacitors owing to its merits of high conductivity and act...
A high-performance electrode for supercapacitors is designed and synthesized by growing electroactiv...
Porous carbon-metal oxide hybrid materials are advanced functional composites with great potential f...
It is very important to design hybrid core–shell structured electrode materials to obtain superior e...
Pseudocapacitive energy storage\ua0via\ua0Li+\ua0storage at the surface/interface of the electrode i...
We report the synthesis of two-dimensional (2D) NiCo2O4 nanosheet-coated three-dimensional graphene ...
Nanostructured transition metal oxide synthesis possessing high energy density and stability is desi...
Herein, we report a strategy for controlled synthesis of functional nanomaterials desired for energy...
Two one-dimensional hierarchical hybrid nanostructures composed of NiCo2O4 nanorods and ultrathin na...
In this work, a three dimensional (3D) interconnected carbon network consisting of ultrathin graphit...