Nonaqueous redox flow batteries are a fast-growing area of research and development motivated by the need to develop lowcost energy storage systems. The identification of a highly conductive, yet selective membrane, is of paramount importance to enabling such a technology. Herein, we report the swelling behavior, ionic conductivity, and species crossover of lithiated Nafion 117 membranes immersed in three nonaqueous electrolytes (PC, PC : EC, and DMSO). Our results show that solvent volume fraction within the membrane has the greatest effect on both conductivity and crossover. An approximate linear relationship between diffusive crossover of neutral redox species (ferrocene) and the ionic conductivity of membrane was observed. As a secondar...
One of the major sources of lost capacity in all-vanadium redox flow batteries (VRFBs) is the undesi...
The membrane Nafion ® is commonly used as a polymer electrolyte fuel cell technology, particulary fo...
This work was supported by the National Natural Science Foundation of China (Grant No. 21636007) and...
Nonaqueous redox flow batteries are a fast-growing area of research and development motivated by the...
Nonaqueous redox flow batteries are a fast-growing area of research and development motivated by the...
Membrane transport properties are crucial for electrochemical devices, and these properties are infl...
The motivation of this work comes from one of the major problems of emerging non-aqueous flow batter...
Among various components commonly used in redox flow batteries (RFBs), the separator plays a signifi...
The development of high-performance membrane materials for non-aqueous redox flow batteries (NAqRFBs...
Redox flow batteries such as vanadium and Zn-Br are a promising stationary energy storage system cap...
Here highly conductive, solvent-resistant anionic Diels Alder polyphenylene (DAPP) membranes were sy...
Abstract − Membrane characterization methods for aqueous redox flow batteries aqueous RFBs were modi...
Nafion series cation exchange membranes are extensively investigated and applied in proton exchange ...
Solvent-filled membranes, such as Nafion, are an important class of polymer electrolytes because the...
Yan, YushanA high selectivity and a low internal resistance are key performance properties for ion-e...
One of the major sources of lost capacity in all-vanadium redox flow batteries (VRFBs) is the undesi...
The membrane Nafion ® is commonly used as a polymer electrolyte fuel cell technology, particulary fo...
This work was supported by the National Natural Science Foundation of China (Grant No. 21636007) and...
Nonaqueous redox flow batteries are a fast-growing area of research and development motivated by the...
Nonaqueous redox flow batteries are a fast-growing area of research and development motivated by the...
Membrane transport properties are crucial for electrochemical devices, and these properties are infl...
The motivation of this work comes from one of the major problems of emerging non-aqueous flow batter...
Among various components commonly used in redox flow batteries (RFBs), the separator plays a signifi...
The development of high-performance membrane materials for non-aqueous redox flow batteries (NAqRFBs...
Redox flow batteries such as vanadium and Zn-Br are a promising stationary energy storage system cap...
Here highly conductive, solvent-resistant anionic Diels Alder polyphenylene (DAPP) membranes were sy...
Abstract − Membrane characterization methods for aqueous redox flow batteries aqueous RFBs were modi...
Nafion series cation exchange membranes are extensively investigated and applied in proton exchange ...
Solvent-filled membranes, such as Nafion, are an important class of polymer electrolytes because the...
Yan, YushanA high selectivity and a low internal resistance are key performance properties for ion-e...
One of the major sources of lost capacity in all-vanadium redox flow batteries (VRFBs) is the undesi...
The membrane Nafion ® is commonly used as a polymer electrolyte fuel cell technology, particulary fo...
This work was supported by the National Natural Science Foundation of China (Grant No. 21636007) and...