Aqueous redox flow batteries (ARFBs) exhibit great potential for large-scale energy storage, but the cross-contamination, limited ion conductivity, and high costs of ion-exchange membranes restrict the wide application of ARFBs. Herein, we report the construction of aqueous colloid flow batteries (ACFBs) based on redox-active polyoxometalate (POM) colloid electrolytes and size-exclusive membrane separators. The aqueous suspensions of POM clusters, such as [N(C3H7)4]4[H12(VO2)12(C6H5PO3)8]·xH2O and [N(C3H7)4]4[H12(VO2)12(4-FC6H4PO3)8]·xH2O, deliver good reversibility, high redox kinetics, and long cycling life. The nanoscale sizes of POM clusters make them compatible with cheap commercial dialysis membrane separators to replace expensive ion...
Intermittent energy sources, including solar and wind, require scalable, low-cost, multi-hour energy...
Flexible and scalable energy storage solutions are necessary for mitigating fluctuations of renewabl...
Solar and wind energy generation and their grid-scale integration are growing rapidly, however their...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
The ongoing development of redox-active charge carriers for nonaqueous redox-flow batteries has led ...
Scalable energy storage technologies are needed to integrate high levels of intermittent energy sour...
Redox flow batteries (RFBs) based on aqueous organic electrolytes are promising technologies for lar...
Redox flow batteries have the potential to solve the storage system issue at hand, however, many of ...
Versatile and readily available battery materials compatible with a range of electrode configuration...
Redox Flow Batteries (RFB) stand out as a promising energy storage technology to mitigate the irregu...
Redox flow batteries (RFBs) based on aqueous organic electrolytes are a promising technology for saf...
Redox flow batteries (RFBs) have emerged as a promising solution for large-scale stationary energy s...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...
Redox flow batteries (RFBs) based on aqueous organic electrolytes are a promising technology for saf...
Here we show how to design organic redox-active solutions for use in redox-flow batteries, with an e...
Intermittent energy sources, including solar and wind, require scalable, low-cost, multi-hour energy...
Flexible and scalable energy storage solutions are necessary for mitigating fluctuations of renewabl...
Solar and wind energy generation and their grid-scale integration are growing rapidly, however their...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
The ongoing development of redox-active charge carriers for nonaqueous redox-flow batteries has led ...
Scalable energy storage technologies are needed to integrate high levels of intermittent energy sour...
Redox flow batteries (RFBs) based on aqueous organic electrolytes are promising technologies for lar...
Redox flow batteries have the potential to solve the storage system issue at hand, however, many of ...
Versatile and readily available battery materials compatible with a range of electrode configuration...
Redox Flow Batteries (RFB) stand out as a promising energy storage technology to mitigate the irregu...
Redox flow batteries (RFBs) based on aqueous organic electrolytes are a promising technology for saf...
Redox flow batteries (RFBs) have emerged as a promising solution for large-scale stationary energy s...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...
Redox flow batteries (RFBs) based on aqueous organic electrolytes are a promising technology for saf...
Here we show how to design organic redox-active solutions for use in redox-flow batteries, with an e...
Intermittent energy sources, including solar and wind, require scalable, low-cost, multi-hour energy...
Flexible and scalable energy storage solutions are necessary for mitigating fluctuations of renewabl...
Solar and wind energy generation and their grid-scale integration are growing rapidly, however their...