An anionic gamma-aminobutyric acid-functionalized naphthalene diimide (GABA-NDI) was investigated for its possible application in flow batteries. A GABA-NDI/ferrocyanide flow battery was stable over 200 cycles and demonstrated an average coulombic efficiency of 99.96% and an excellent energy efficiency of 80.9% at 60 mA cm−2 while accessing 95% of the theoretical capacity of GABA-NDI. An increase in solubility and stability was achieved compared to previous studies. </p
Aqueous redox flow batteries using low-cost organic and inorganic active materials have received gro...
We introduce an aqueous flow battery based on low-cost, non-flammable, non-corrosive and Earth-abund...
Redox-active organic materials (ROMs) are becoming increasingly attractive for use in redox flow bat...
In the pursuit of environmentally friendly energy storage, aqueous organic redox flow batteries (AOR...
A quaternary amine-functionalized naphthalene diimide (NDI) moiety is synthesized and considered as ...
In the current times of uncertainty in face of climate change, sustainable energy-related technologi...
© The Royal Society of Chemistry 2020.Developing organic materials that show stable and highly rever...
Aqueous organic redox flow batteries (AORFBs) have attracted increased interest as sustainable energ...
Organic redox-active molecules are a promising platform for designing sustainable, cheap, and safe c...
Funding Information: The work was financially supported by the National Natural Science Foundation o...
Aqueous hybrid flow batteries (AHFBs) have emerged as promising systems for large-scale electrical e...
Funding Information: The work was financially supported by the National Natural Science Foundation o...
All-organic non-aqueous redox flow batteries (O-NRFBs) are a promising technology for grid-scale ene...
Funding Information: The work was financially supported by the National Natural Science Foundation o...
honors thereCollege of ScienceChemistryMatthew S. SigmanEnergy storage research has undergone transf...
Aqueous redox flow batteries using low-cost organic and inorganic active materials have received gro...
We introduce an aqueous flow battery based on low-cost, non-flammable, non-corrosive and Earth-abund...
Redox-active organic materials (ROMs) are becoming increasingly attractive for use in redox flow bat...
In the pursuit of environmentally friendly energy storage, aqueous organic redox flow batteries (AOR...
A quaternary amine-functionalized naphthalene diimide (NDI) moiety is synthesized and considered as ...
In the current times of uncertainty in face of climate change, sustainable energy-related technologi...
© The Royal Society of Chemistry 2020.Developing organic materials that show stable and highly rever...
Aqueous organic redox flow batteries (AORFBs) have attracted increased interest as sustainable energ...
Organic redox-active molecules are a promising platform for designing sustainable, cheap, and safe c...
Funding Information: The work was financially supported by the National Natural Science Foundation o...
Aqueous hybrid flow batteries (AHFBs) have emerged as promising systems for large-scale electrical e...
Funding Information: The work was financially supported by the National Natural Science Foundation o...
All-organic non-aqueous redox flow batteries (O-NRFBs) are a promising technology for grid-scale ene...
Funding Information: The work was financially supported by the National Natural Science Foundation o...
honors thereCollege of ScienceChemistryMatthew S. SigmanEnergy storage research has undergone transf...
Aqueous redox flow batteries using low-cost organic and inorganic active materials have received gro...
We introduce an aqueous flow battery based on low-cost, non-flammable, non-corrosive and Earth-abund...
Redox-active organic materials (ROMs) are becoming increasingly attractive for use in redox flow bat...