Versatile and readily available battery materials compatible with a range of electrode configurations and cell designs are desirable for renewable energy storage. Here we report a promising class of materials based on redox active colloids (RACs) that are inherently modular in their design and overcome challenges faced by small-molecule organic materials for battery applications, such as crossover and chemical/morphological stability. RACs are cross-linked polymer spheres, synthesized with uniform diameters between 80 and 800 nm, and exhibit reversible redox activity as single particles, as monolayer films, and in the form of flowable dispersions. Viologen-based RACs display reversible cycling, accessing up to 99% of their capacity and 99 ±...
Nonflammable eutectic solvents show great potential to enhance the concentrations of the redox-activ...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...
Organic redox-active materials offer advantages of material tunability while maintaining high perfor...
Aqueous redox flow batteries (ARFBs) exhibit great potential for large-scale energy storage, but the...
It is an exciting time for exploring the synergism between the chemical and dimensional properties o...
We describe the nonaqueous redox-matched flow battery (RMFB), where charge is stored on redox-active...
The work presented is focused on the development of polymers and polymer architectures to create red...
The increasing contribution of intermittent renewable energy sources to the electrical grid is resul...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
With the growing interest in energy in renewable sources from intermittent and fluctuating solar and...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
Hydrophilic redox-active polymer nanoparticles with different redox potentials and radii were synthe...
The ongoing development of redox-active charge carriers for nonaqueous redox-flow batteries has led ...
Redox flow batteries have the potential to revolutionize our use of intermittent sustainable energy ...
Nonflammable eutectic solvents show great potential to enhance the concentrations of the redox-activ...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...
Organic redox-active materials offer advantages of material tunability while maintaining high perfor...
Aqueous redox flow batteries (ARFBs) exhibit great potential for large-scale energy storage, but the...
It is an exciting time for exploring the synergism between the chemical and dimensional properties o...
We describe the nonaqueous redox-matched flow battery (RMFB), where charge is stored on redox-active...
The work presented is focused on the development of polymers and polymer architectures to create red...
The increasing contribution of intermittent renewable energy sources to the electrical grid is resul...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
With the growing interest in energy in renewable sources from intermittent and fluctuating solar and...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
Hydrophilic redox-active polymer nanoparticles with different redox potentials and radii were synthe...
The ongoing development of redox-active charge carriers for nonaqueous redox-flow batteries has led ...
Redox flow batteries have the potential to revolutionize our use of intermittent sustainable energy ...
Nonflammable eutectic solvents show great potential to enhance the concentrations of the redox-activ...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...