Currently, energy storage technologies are becoming essential in the transition of replacing fossil fuels with more renewable electricity production means. Among storage technologies, redox flow batteries (RFBs) can represent a valid option due to their unique characteristic of decoupling energy storage from power output. To push RFBs further into the market, it is essential to include low-cost materials such as new generation membranes with low ohmic resistance, high transport selectivity, and long durability. This work proposes a composite membrane for vanadium RFBs and a method of preparation. The membrane was prepared starting from two polymers, meta-polybenzimidazole (6 μm) and porous polypropylene (30 μm), through a gluing approach by...
The need for large scale energy storage has become a priority to integrate renewable energy sources ...
In order to reduce the cost of membrane used in vanadium redox flow battery (VRB) system while keepi...
Enhancing the chemical stability of ion exchange membranes is essential for improving cycle life and...
Polybenzimidazole (PBI) membranes show excellent chemical stability and low vanadium crossover in va...
Yan, YushanRedox flow batteries (RFBs) are currently considered as the most appealing energy storage...
Based on amino polybenzimidazoles with flexible hydrophilic side chains (AmPBI-MOE) and polymeric io...
Aiming to develop a suitable ion exchange membrane for vanadium redox flow battery (VRB), a new kind...
Battery storage systems become increasingly more important to fulfil large demands in peaks of energ...
The Vanadium Redox Flow Battery (VRFB) has been garnering more usage and recognition due to its exte...
© 2016 The Royal Society of Chemistry. Porous polybenzimidazole membranes with ultra-high selectivit...
We present the first results of an anion exchange ionomer membrane, hexamethyl-p-terphenyl poly(benz...
A commercial porous polyvinylidene fluoride membrane (pore size 0.65 μm, nominally 125 μm thick) is ...
Polybenzimidazole membranes with dual proton transport channels (B-PBI) are designed and fabricated ...
A simple salt-induced phase separation method is presented to prepare porous polybenzimidazole (PBI)...
It is predicted that the future of energy will mainly rely on batteries such as vanadium redox flow ...
The need for large scale energy storage has become a priority to integrate renewable energy sources ...
In order to reduce the cost of membrane used in vanadium redox flow battery (VRB) system while keepi...
Enhancing the chemical stability of ion exchange membranes is essential for improving cycle life and...
Polybenzimidazole (PBI) membranes show excellent chemical stability and low vanadium crossover in va...
Yan, YushanRedox flow batteries (RFBs) are currently considered as the most appealing energy storage...
Based on amino polybenzimidazoles with flexible hydrophilic side chains (AmPBI-MOE) and polymeric io...
Aiming to develop a suitable ion exchange membrane for vanadium redox flow battery (VRB), a new kind...
Battery storage systems become increasingly more important to fulfil large demands in peaks of energ...
The Vanadium Redox Flow Battery (VRFB) has been garnering more usage and recognition due to its exte...
© 2016 The Royal Society of Chemistry. Porous polybenzimidazole membranes with ultra-high selectivit...
We present the first results of an anion exchange ionomer membrane, hexamethyl-p-terphenyl poly(benz...
A commercial porous polyvinylidene fluoride membrane (pore size 0.65 μm, nominally 125 μm thick) is ...
Polybenzimidazole membranes with dual proton transport channels (B-PBI) are designed and fabricated ...
A simple salt-induced phase separation method is presented to prepare porous polybenzimidazole (PBI)...
It is predicted that the future of energy will mainly rely on batteries such as vanadium redox flow ...
The need for large scale energy storage has become a priority to integrate renewable energy sources ...
In order to reduce the cost of membrane used in vanadium redox flow battery (VRB) system while keepi...
Enhancing the chemical stability of ion exchange membranes is essential for improving cycle life and...