Development of more efficient electrodes is essential to improve the competitiveness of vanadium redox flow battery (VRFB) systems. Covalent functionalization of carbon structure in graphene oxide with phosphonic acid groups was carried out to enhance the electrode wettability. The phosphonated graphene oxide (P-GO) was characterized and found displaying an improved electrocatalytic performance towards electrooxidation/electroreduction of vanadium ion pairs. The defect in P-GO structure increased the negative charge density on the surface leading to higher vanadium ions tendency for electrooxidation/electroreduction reactions. The battery performance was evaluated using electrodes made of carbon felt hosted GO and P-GO in a single cell VRFB...
Numerous surface treatment methods are known to enhance the electrochemical activity of graphite fel...
Oxygen functional groups play a key role in vanadium redox reactions. To identify the effective loca...
In spite of their low cost, high activity, and diversity, metal oxide catalysts have not been widely...
An electrochemically reduced graphene oxide was grown on carbon felt surface in a simple one-step el...
[EN] Two graphene-like materials, obtained by thermal exfoliation and reduction of a graphite oxide ...
Development of the Vanadium Redox Flow Battery (VRFB) has been widely reported but typically only fo...
The development of high-power density vanadium redox flow batteries (VRFBs) with high energy efficie...
The development of more efficient electrode materials is essential to obtain vanadium redox flow bat...
As one of the key factors that limit the development of vanadium redox flow battery (VRFB), the posi...
Despite the appealing features of vanadium redox flow batteries as a promising energy storage soluti...
Fuel cell grade gas-diffusion layer carbon paper (CP) electrodes are subjected to electrophoresis in...
Few layered graphene oxide (GO) nanosheets with large specific surface area (42.1 m2 g−1) are succes...
A newly prepared type of carbon felt with oxygen-rich phosphate groups is proposed as a promising el...
Graphene oxide (GO) has attracted tremendous attention in membrane-based separation field as it can ...
The vanadium redox flow battery mainly consists of an electrode, membrane, and electrolyte. Positive...
Numerous surface treatment methods are known to enhance the electrochemical activity of graphite fel...
Oxygen functional groups play a key role in vanadium redox reactions. To identify the effective loca...
In spite of their low cost, high activity, and diversity, metal oxide catalysts have not been widely...
An electrochemically reduced graphene oxide was grown on carbon felt surface in a simple one-step el...
[EN] Two graphene-like materials, obtained by thermal exfoliation and reduction of a graphite oxide ...
Development of the Vanadium Redox Flow Battery (VRFB) has been widely reported but typically only fo...
The development of high-power density vanadium redox flow batteries (VRFBs) with high energy efficie...
The development of more efficient electrode materials is essential to obtain vanadium redox flow bat...
As one of the key factors that limit the development of vanadium redox flow battery (VRFB), the posi...
Despite the appealing features of vanadium redox flow batteries as a promising energy storage soluti...
Fuel cell grade gas-diffusion layer carbon paper (CP) electrodes are subjected to electrophoresis in...
Few layered graphene oxide (GO) nanosheets with large specific surface area (42.1 m2 g−1) are succes...
A newly prepared type of carbon felt with oxygen-rich phosphate groups is proposed as a promising el...
Graphene oxide (GO) has attracted tremendous attention in membrane-based separation field as it can ...
The vanadium redox flow battery mainly consists of an electrode, membrane, and electrolyte. Positive...
Numerous surface treatment methods are known to enhance the electrochemical activity of graphite fel...
Oxygen functional groups play a key role in vanadium redox reactions. To identify the effective loca...
In spite of their low cost, high activity, and diversity, metal oxide catalysts have not been widely...