Supercapacitors offer a promising alternative to batteries, especially due to their excellent power density and fast charging rate capability. However, the cycling stability and material synthesis reproducibility need to be significantly improved to enhance the reliability and durability of supercapacitors in practical applications. Graphene acid (GA) is a conductive graphene derivative dispersible in water that can be prepared on a large scale from fluorographene. Here, we report a synthesis protocol with high reproducibility for preparing GA. The charging/discharging rate stability and cycling stability of GA were tested in a two-electrode cell with a sulfuric acid electrolyte. The rate stability test revealed that GA could be repeatedly ...
Batteries run just about everything portable in our lives such as smartphones, tablets, computers, e...
AbstractGraphene-based materials have been full of vigor and tremendous potentiality for application...
In the present paper, graphene has been addressed as active material for supercapacitor electrodes. ...
One of the major elements in determining the supercapacitor performance is the development of a nano...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
Owing to its high surface area and excellent conductivity, graphene is considered an efficient elect...
An acid-assisted ultrarapid thermal strategy is developed for constructing specifically functionaliz...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
A simple and effective method using 6-amino-4-hydroxy-2-naphthalenesulfonic acid (ANS) for the synth...
Supercapacitors (SCs) have generated a great deal of interest regarding their prospects for applicat...
Abstract. Graphenes prepared by three different methods have been investigated as electrode material...
Graphene-based materials are widely explored as the active electrode materials for energy storage an...
Abstract For sustainability motives, the world must accelerate current work towards meeting the risi...
Eco-friendly, electrochemically active electrode materials based on covalent graphene derivatives of...
Technological breakthroughs in energy storage are being driven by the development of next-generation...
Batteries run just about everything portable in our lives such as smartphones, tablets, computers, e...
AbstractGraphene-based materials have been full of vigor and tremendous potentiality for application...
In the present paper, graphene has been addressed as active material for supercapacitor electrodes. ...
One of the major elements in determining the supercapacitor performance is the development of a nano...
Present state-of-the-art graphene-based electrodes for supercapacitors remain far from commercial re...
Owing to its high surface area and excellent conductivity, graphene is considered an efficient elect...
An acid-assisted ultrarapid thermal strategy is developed for constructing specifically functionaliz...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
A simple and effective method using 6-amino-4-hydroxy-2-naphthalenesulfonic acid (ANS) for the synth...
Supercapacitors (SCs) have generated a great deal of interest regarding their prospects for applicat...
Abstract. Graphenes prepared by three different methods have been investigated as electrode material...
Graphene-based materials are widely explored as the active electrode materials for energy storage an...
Abstract For sustainability motives, the world must accelerate current work towards meeting the risi...
Eco-friendly, electrochemically active electrode materials based on covalent graphene derivatives of...
Technological breakthroughs in energy storage are being driven by the development of next-generation...
Batteries run just about everything portable in our lives such as smartphones, tablets, computers, e...
AbstractGraphene-based materials have been full of vigor and tremendous potentiality for application...
In the present paper, graphene has been addressed as active material for supercapacitor electrodes. ...