peer reviewedOrganic electrode materials capable of reversible coordination/uncoordination of both mono- and multivalent ions in aqueous electrolytes are desired to develop safe, sustainable, and cost-effective water-based batteries. Here, we demonstrate the universality of bioinspired redox-active polymers bearing catechol pendants to reversibly coordinate/uncoordinate numerous cations including H+ and Li+ to Zn2+ and Al3+ with fast kinetics and ultralong cyclability. This unprecedented versatility is based on a catecholato–metal cation complex (Cat2–(mMn+)) charge storage mechanism that dictates the overall electrochemistry: formation of stronger complexes in M+ < M2+ < M3+ order resulted in a huge redox potential increment that might be ...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Electrode materials exploiting multielectron-transfer processes are essential components for large-s...
Organic electrode materials capable of reversible coordination/uncoordination of both mono- and mult...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Organic materials are being investigated as an alternative to inorganic cathodes in lithium batterie...
Aqueous all-polymer proton batteries (APPBs) consisting of redox-active polymer electrodes are consi...
Herein, we describe the synthesis and organometallic-mediated radical polymerization of 1-vinyl-3-al...
The near future will put a lot of demand on the increasing need for energy production and storage. I...
peer reviewedOrganic redox-active materials are actively being searched as a more sustainable altern...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
Aqueous zinc-polymer batteries (AZPBs) comprising abundant Zn metal anode and redox-active polymer (...
Highly water-dispersible, redox-active 1D coordination polymers (CPs) have been synthesized using lo...
Redox-active organic materials (ROMs) hold great promise as potential electrode materials for eco-fr...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Electrode materials exploiting multielectron-transfer processes are essential components for large-s...
Organic electrode materials capable of reversible coordination/uncoordination of both mono- and mult...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Organic materials are being investigated as an alternative to inorganic cathodes in lithium batterie...
Aqueous all-polymer proton batteries (APPBs) consisting of redox-active polymer electrodes are consi...
Herein, we describe the synthesis and organometallic-mediated radical polymerization of 1-vinyl-3-al...
The near future will put a lot of demand on the increasing need for energy production and storage. I...
peer reviewedOrganic redox-active materials are actively being searched as a more sustainable altern...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
Aqueous zinc-polymer batteries (AZPBs) comprising abundant Zn metal anode and redox-active polymer (...
Highly water-dispersible, redox-active 1D coordination polymers (CPs) have been synthesized using lo...
Redox-active organic materials (ROMs) hold great promise as potential electrode materials for eco-fr...
Nonaqueous redox flow batteries (NRFBs) represent an attractive technology for energy storage from i...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Electrode materials exploiting multielectron-transfer processes are essential components for large-s...