Binary transition metal oxides (BTMOs) are active materials, which have the potential for supercapacitor materials due to their high theoretical capacity. Herein, a BTMO based on zinc and iron was experimentally investigated in both the bare and hybrid forms, i.e. as ZnFe2O4 nanorods and ZnFe2O4 nanorods on reduced graphene oxide (rGO). After the synthesis, the products were investigated by different analytical techniques. The performance of the nano-engineered products as supercapacitor electrode materials were probed by electrochemical analysis. The electrochemical results obtained from the cyclic voltammetry, galvanostatic charge-discharge, and electrochemical impedance spectroscopy showed the huge potential of the prepared electrodes f...
In this study, graphene oxide (GO) was chemically reacted with sodium borohydride (NaBH4) to form re...
A hybrid structure of zinc oxide (ZnO) on three dimensional (3D) graphene foam has been synthesized ...
Recently, thin-film supercapacitors have received much interest because they can achieve both high e...
Binary transition metal oxides (BTMOs) are active materials, which have the potential for supercapac...
The development of electrode materials capable of delivering high electrochemical performance is a...
In this work, a comparative study of electrochemical performance of reduced graphene oxide-ferrites ...
This study aims at developing hybrid composite materials consisting of iron oxide (Fe3O4) /MXene /re...
Supercapacitors are gaining tremendous attention as energy storage devices for the benefits these de...
The heart of this report will be on two main objectives. They are firstly, the establishment of grow...
Supercapacitors have been recognized as one of the more promising energy storage devices, with great...
Current energy crises are inspiring researchers to focus intensively on development of feasible ways...
Nitrogen-doped graphene (NDG) and mixed metal oxides have been attracting much attention as the comb...
AbstractGraphene-ZnO nanocomposites (G-ZnO) were prepared by a facile solvothermal approach. Well, c...
Nitrogen-doped graphene (NDG) and mixed metal oxides have been attracting much attention as the comb...
An efficient and simple hydrothermal method has been developed to prepare Carbon nanotube/Graphite n...
In this study, graphene oxide (GO) was chemically reacted with sodium borohydride (NaBH4) to form re...
A hybrid structure of zinc oxide (ZnO) on three dimensional (3D) graphene foam has been synthesized ...
Recently, thin-film supercapacitors have received much interest because they can achieve both high e...
Binary transition metal oxides (BTMOs) are active materials, which have the potential for supercapac...
The development of electrode materials capable of delivering high electrochemical performance is a...
In this work, a comparative study of electrochemical performance of reduced graphene oxide-ferrites ...
This study aims at developing hybrid composite materials consisting of iron oxide (Fe3O4) /MXene /re...
Supercapacitors are gaining tremendous attention as energy storage devices for the benefits these de...
The heart of this report will be on two main objectives. They are firstly, the establishment of grow...
Supercapacitors have been recognized as one of the more promising energy storage devices, with great...
Current energy crises are inspiring researchers to focus intensively on development of feasible ways...
Nitrogen-doped graphene (NDG) and mixed metal oxides have been attracting much attention as the comb...
AbstractGraphene-ZnO nanocomposites (G-ZnO) were prepared by a facile solvothermal approach. Well, c...
Nitrogen-doped graphene (NDG) and mixed metal oxides have been attracting much attention as the comb...
An efficient and simple hydrothermal method has been developed to prepare Carbon nanotube/Graphite n...
In this study, graphene oxide (GO) was chemically reacted with sodium borohydride (NaBH4) to form re...
A hybrid structure of zinc oxide (ZnO) on three dimensional (3D) graphene foam has been synthesized ...
Recently, thin-film supercapacitors have received much interest because they can achieve both high e...