Nanofiltration (NF) membranes with in situ assembled silica on the surface and in the pores were proposed and successfully prepared for vanadium redox flow battery (VRB) applications to improve the vanadium/proton selectivity. VRBs assembled with the modified membranes exhibited much higher Coulombic efficiency than that with original NF membranes, while with a similar voltage efficiency. The results indicate that silica modification can effectively increase the membranes' ion selectivity and maintain good ion-conducting properties. The concept provides an effective way to fabricate high performance porous membranes for VRB applications
The increase in renewable energy penetration to grids and micro-grids resulted in increase in use of...
Novel polysulfone membranes with bunch-like tertiary amine groups are synthesized with high ion sele...
For the first time with this study, membranes from directly copolymerized disulfonated poly(arylene ...
The vanadium redox flow battery (VRB) has received considerable attention due to its long cycle life...
As the demand for renewable energy increases, there is a need for storing energy for later use. Vana...
The Vanadium Redox Flow Battery (VRFB) has been garnering more usage and recognition due to its exte...
Nafion 117(N-117)/SiO2-SO3H modified membranes were prepared using the 3-Mercaptopropyltrimethoxysil...
Nanofiltration Membranes with Tunable Porosity and Its Application in all Vanadium Redox Flow Batter
It is predicted that the future of energy will mainly rely on batteries such as vanadium redox flow ...
We demonstrate application of a commercial nanoporous polyvinyl chloride (PVC)/silica separator in a...
Energy storage is a solution to the problem of renewable energy intermittency. The vanadium redox fl...
In order to reduce the permeation of vanadium ions across the ion exchange membrane during the opera...
Battery storage systems become increasingly more important to fulfil large demands in peaks of energ...
Vanadium crossover hinders widespread commercial adoption of vanadium redox flow batteries (VRFBs). ...
In recent years, vanadium redox flow batteries (VRFB) have captured immense attraction in electroche...
The increase in renewable energy penetration to grids and micro-grids resulted in increase in use of...
Novel polysulfone membranes with bunch-like tertiary amine groups are synthesized with high ion sele...
For the first time with this study, membranes from directly copolymerized disulfonated poly(arylene ...
The vanadium redox flow battery (VRB) has received considerable attention due to its long cycle life...
As the demand for renewable energy increases, there is a need for storing energy for later use. Vana...
The Vanadium Redox Flow Battery (VRFB) has been garnering more usage and recognition due to its exte...
Nafion 117(N-117)/SiO2-SO3H modified membranes were prepared using the 3-Mercaptopropyltrimethoxysil...
Nanofiltration Membranes with Tunable Porosity and Its Application in all Vanadium Redox Flow Batter
It is predicted that the future of energy will mainly rely on batteries such as vanadium redox flow ...
We demonstrate application of a commercial nanoporous polyvinyl chloride (PVC)/silica separator in a...
Energy storage is a solution to the problem of renewable energy intermittency. The vanadium redox fl...
In order to reduce the permeation of vanadium ions across the ion exchange membrane during the opera...
Battery storage systems become increasingly more important to fulfil large demands in peaks of energ...
Vanadium crossover hinders widespread commercial adoption of vanadium redox flow batteries (VRFBs). ...
In recent years, vanadium redox flow batteries (VRFB) have captured immense attraction in electroche...
The increase in renewable energy penetration to grids and micro-grids resulted in increase in use of...
Novel polysulfone membranes with bunch-like tertiary amine groups are synthesized with high ion sele...
For the first time with this study, membranes from directly copolymerized disulfonated poly(arylene ...