In this study, α-MnO2 and Fe2O3 nanomaterials are prepared on a carbon fiber modified with carbon nanotubes to produce the nonbinder core–shell positive (α-MnO2@CNTs/CC) and negative (Fe2O3@CNTs/CC) electrodes that can be operated in a wide voltage window in ultrafast asymmetrical flexible supercapacitors. MnO2 and Fe2O3 have attracted wide research interests as electrode materials in energy storage applications because of the abundant natural resources, high theoretical specific capacities, environmental friendliness, and low cost. The electrochemical performance of each electrode is assessed in 1 M Na2SO4 and the energy storage properties of the supercapacitors consisting of the two composite electrodes are determined in Na2SO4 and EMImBF...
This work is licensed under a Creative Commons Attribution 4.0 International License.The facile and ...
The facile and economical electrochemical and successive ionic layer adsorption and reaction (SILAR)...
Herein, the nanostructured polypyrrole-coated MnO2 nanofibers growth on carbon cloth (PPy-MnO2-CC) t...
Fibers made from CNTs (CNT fibers) have the potential to form high-strength, lightweight materials w...
In recent years, flexible electronic devices pursued for potential applications. The design and the ...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
Manganese oxide (MnO [subscript]2) has long been investigated as a pseudo-capacitive material for fa...
Electrochemical supercapacitors (ES), or ultracapacitors, store energy using either reversible adsor...
Flexible energy storage units are highly desired to meet the ever-increasing demands for flexible el...
It is vital to improve the electrochemical performance of negative materials for energy storage devi...
In present investigation, we have prepared a nanocomposites of highly porous MnO2 spongy balls and m...
Abstract Large-area ultrafine MnO2 nanowire arrays (NWA) directly grew on a carbon fiber (CF, used a...
In present investigation, we have prepared a nanocomposites of highly porous MnO2 spongy balls and m...
In present investigation, we have prepared a nanocomposites of highly porous MnO2 spongy balls and m...
© 2018 All-solid-state flexible supercapacitors have shown great potential in wearable and portable ...
This work is licensed under a Creative Commons Attribution 4.0 International License.The facile and ...
The facile and economical electrochemical and successive ionic layer adsorption and reaction (SILAR)...
Herein, the nanostructured polypyrrole-coated MnO2 nanofibers growth on carbon cloth (PPy-MnO2-CC) t...
Fibers made from CNTs (CNT fibers) have the potential to form high-strength, lightweight materials w...
In recent years, flexible electronic devices pursued for potential applications. The design and the ...
© 2017, Springer Science+Business Media New York. With the fast development of portable and wearable...
Manganese oxide (MnO [subscript]2) has long been investigated as a pseudo-capacitive material for fa...
Electrochemical supercapacitors (ES), or ultracapacitors, store energy using either reversible adsor...
Flexible energy storage units are highly desired to meet the ever-increasing demands for flexible el...
It is vital to improve the electrochemical performance of negative materials for energy storage devi...
In present investigation, we have prepared a nanocomposites of highly porous MnO2 spongy balls and m...
Abstract Large-area ultrafine MnO2 nanowire arrays (NWA) directly grew on a carbon fiber (CF, used a...
In present investigation, we have prepared a nanocomposites of highly porous MnO2 spongy balls and m...
In present investigation, we have prepared a nanocomposites of highly porous MnO2 spongy balls and m...
© 2018 All-solid-state flexible supercapacitors have shown great potential in wearable and portable ...
This work is licensed under a Creative Commons Attribution 4.0 International License.The facile and ...
The facile and economical electrochemical and successive ionic layer adsorption and reaction (SILAR)...
Herein, the nanostructured polypyrrole-coated MnO2 nanofibers growth on carbon cloth (PPy-MnO2-CC) t...