MnO2 nanoflower is prepared by electrochemical conversion of Mn3O4 obtained by heat treatment of spent zinc‒carbon batteries cathode powder. The heat treated and converted powders were characterized by TGA, XRD, FTIR, FESEM and TEM techniques. XRD analyses show formation of Mn3O4 and MnO2 phases for the heat treated and converted powders, respectively. FESEM images indicate the formation of porous nanoflower structure of MnO2, while, condensed aggregated particles are obtained for Mn3O4. The energy band gap of MnO2 is obtained from UV‒Vis spectra to be 2.4 eV. The electrochemical properties are investigated using cyclic voltammetry, galvanostatic charge‒discharge and electrochemical impedance techniques using three-electrode system. The spe...
The increasing demands on energy have led to environmental issues and the depletion of fossil fuels....
Nanostructured manganese oxides with different crystallization behaviors were fabricated by a simple...
Electrochemical capacity retention of nearly X-ray amorphous nanostructured manganese oxide (nanoMnO...
The electrochemical performance of MnO2 nanoflowers recovered from spent household zinc–carbon batte...
In this study, electrochemical materials, namely MnO2, reduced graphene oxide (rGO), porous carbon n...
Flower shaped birnessite type manganese oxide (δ-MnO2) nanostructures are synthesized using a simple...
The nanomaterials are used widely and effectively in electrochemical energy storage because of their...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
A facile strategy is developed for the synthesis of MnO2 nanoflakes/hierarchical porous carbon spher...
Supercapacitors (SCs) also known as electrochemical capacitor functioning as alternative energy stor...
Porous MnO2 nanostructure with large surface area and large pore volume was prepared by a facial che...
MnO 2 nanosheets have been synthesized by using a redox reaction of manganese nitrate tetrahydrate a...
The increasing demands on energy have led to environmental issues and the depletion of fossil fuels....
Nanostructured manganese oxides with different crystallization behaviors were fabricated by a simple...
Electrochemical capacity retention of nearly X-ray amorphous nanostructured manganese oxide (nanoMnO...
The electrochemical performance of MnO2 nanoflowers recovered from spent household zinc–carbon batte...
In this study, electrochemical materials, namely MnO2, reduced graphene oxide (rGO), porous carbon n...
Flower shaped birnessite type manganese oxide (δ-MnO2) nanostructures are synthesized using a simple...
The nanomaterials are used widely and effectively in electrochemical energy storage because of their...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
We report a facile one-step hydrothermal method to prepare porous MnO 2 nanorods at 110 C for their ...
A facile strategy is developed for the synthesis of MnO2 nanoflakes/hierarchical porous carbon spher...
Supercapacitors (SCs) also known as electrochemical capacitor functioning as alternative energy stor...
Porous MnO2 nanostructure with large surface area and large pore volume was prepared by a facial che...
MnO 2 nanosheets have been synthesized by using a redox reaction of manganese nitrate tetrahydrate a...
The increasing demands on energy have led to environmental issues and the depletion of fossil fuels....
Nanostructured manganese oxides with different crystallization behaviors were fabricated by a simple...
Electrochemical capacity retention of nearly X-ray amorphous nanostructured manganese oxide (nanoMnO...