Graphene is an emerging carbon material that may soon find practical applications. With its unusual properties, graphene is a potential electrode material for electrochemical energy storage. This article highlights recent research progress in graphene-based materials as supercapacitor electrodes. With a brief description of the working principle of supercapacitors, research progress towards the synthesis and modification of graphene-based materials, including graphene oxide, fullerenes, and carbon nanotubes, is presented. Applications of such materials with desirable properties to meet the specific requirements for the design and configuration of advanced supercapacitor devices are summarized and discussed. Future research trends towards ne...
The global demand for high performance and environmentally friendly energy storage systems leads to ...
With the increasing energy consumption, it is urgent to find low cost, environmental protection and ...
200 p.The research described throughout this doctoral thesis has been carried out at CICenergiGUNE, ...
Graphene-based materials are widely explored as the active electrode materials for energy storage an...
Technological breakthroughs in energy storage are being driven by the development of next-generation...
In accordance to the fast technology development and rapid increment in world population, the demand...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
Electric double layer supercapacitors are a class of energy storage device whose strengths are long ...
Because of their unique 2D structure and numerous fascinating properties, graphene-based materials h...
Relentless efforts have been underway to improve the energy storage capability and cyclic stability ...
Tremendous development in the field of portable electronics and hybrid electric vehicles has led to ...
The graphene-based materials are promising for applications in supercapacitors and other energy stor...
AbstractGraphene-based materials have been full of vigor and tremendous potentiality for application...
The ever-increasing demands for energy and environmental concerns due to burning fossil fuels are th...
The global demand for high performance and environmentally friendly energy storage systems leads to ...
With the increasing energy consumption, it is urgent to find low cost, environmental protection and ...
200 p.The research described throughout this doctoral thesis has been carried out at CICenergiGUNE, ...
Graphene-based materials are widely explored as the active electrode materials for energy storage an...
Technological breakthroughs in energy storage are being driven by the development of next-generation...
In accordance to the fast technology development and rapid increment in world population, the demand...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
As worldwide energy consumption continues to increase, so too does the demand for improved energy st...
Electric double layer supercapacitors are a class of energy storage device whose strengths are long ...
Because of their unique 2D structure and numerous fascinating properties, graphene-based materials h...
Relentless efforts have been underway to improve the energy storage capability and cyclic stability ...
Tremendous development in the field of portable electronics and hybrid electric vehicles has led to ...
The graphene-based materials are promising for applications in supercapacitors and other energy stor...
AbstractGraphene-based materials have been full of vigor and tremendous potentiality for application...
The ever-increasing demands for energy and environmental concerns due to burning fossil fuels are th...
The global demand for high performance and environmentally friendly energy storage systems leads to ...
With the increasing energy consumption, it is urgent to find low cost, environmental protection and ...
200 p.The research described throughout this doctoral thesis has been carried out at CICenergiGUNE, ...