In recent years, organic battery cathode materials have emerged as an attractive alternative to metal oxide–based cathodes. Organic redox polymers that can be reversibly oxidized are particularly promising. A drawback, however, often is their limited cycling stability and rate performance in a high voltage range of more than 3.4 V versus Li/Li+. Herein, a conjugated copolymer design with phenothiazine as a redox‐active group and a bithiophene co‐monomer is presented, enabling ultra‐high rate capability and cycling stability. After 30 000 cycles at a 100C rate, >97% of the initial capacity is retained. The composite electrodes feature defined discharge potentials at 3.6 V versus Li/Li+ due to the presence of separated phenothiazine redox ...
A 1D organic redox-active material is combined with another 1D conductive material for rechargeable ...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Organic cathode materials are a sustainable alternative to transition metal oxide‐based compounds in...
Organic cathode materials are promising candidates for a new generation of “green batteries”, since ...
Lithium ion batteries (LIBs) currently deliver the highest energy density of any known secondary ele...
Organic redox polymers are considered a “greener” alternative as battery electrode materials compare...
Organic macromolecules bearing redox-active units are projected to be promising candidates as safe a...
Organic electrode materials are among the promising next generation compounds for battery energy sto...
Organic electrode materials are among the promising next generation compounds for battery energy sto...
Porous organic polymers with triphenylamine (TPA) subunits have attracted a lot of attention as adva...
Redox-active polymers have received recently significant interest as active materials in secondary o...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Although organic p-type cathode materials with high redox potential (>3.5 V vs. Li/Li+) are sustaina...
A 1D organic redox-active material is combined with another 1D conductive material for rechargeable ...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Organic cathode materials are a sustainable alternative to transition metal oxide‐based compounds in...
Organic cathode materials are promising candidates for a new generation of “green batteries”, since ...
Lithium ion batteries (LIBs) currently deliver the highest energy density of any known secondary ele...
Organic redox polymers are considered a “greener” alternative as battery electrode materials compare...
Organic macromolecules bearing redox-active units are projected to be promising candidates as safe a...
Organic electrode materials are among the promising next generation compounds for battery energy sto...
Organic electrode materials are among the promising next generation compounds for battery energy sto...
Porous organic polymers with triphenylamine (TPA) subunits have attracted a lot of attention as adva...
Redox-active polymers have received recently significant interest as active materials in secondary o...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Although organic p-type cathode materials with high redox potential (>3.5 V vs. Li/Li+) are sustaina...
A 1D organic redox-active material is combined with another 1D conductive material for rechargeable ...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
Organic electrode materials represent an intriguing alternative to their inorganic counterparts due ...