Organic redox polymers are considered a “greener” alternative as battery electrode materials compared to transition metal oxides. Among these, phenothiazine-based polymers have attracted significant attention due to their high redox potential of 3.5 V vs Li/Li+ and reversible electrochemistry. In addition, phenothiazine units can exhibit mutual π-interactions, which stabilize their oxidized states. In poly(3-vinyl-N-methylphenothiazine) (PVMPT), such π-interactions led to a unique charge/discharge mechanism, involving the dissolution and redeposition of the polymer during cycling, and resulted in an ultrahigh cycling stability. Herein, we investigate these π-interactions in more detail and what effect their suppression by molecular design h...
Organic macromolecules bearing redox-active units are projected to be promising candidates as safe a...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
© 2020 Elsevier Ltd Electrochemical behavior of new phenothiazine derivative, N-phenyl-3-(phenylimin...
Organic cathode materials are promising candidates for a new generation of “green batteries”, since ...
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...
International audienceDifferent N-substituted phenothiazines have been synthesized and their electro...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Organic materials are promising candidates for next-generation battery systems. However, many organi...
Organic cathode materials are a sustainable alternative to transition metal oxide‐based compounds in...
International audienceHuman activity generates an environmental impact increasingly important includ...
446 pagesOrganic molecules are capable of diverse redox chemistries. This capability has traditional...
Redox active polymers have received considerable attention within the past 25 years. The potential a...
Organic macromolecules bearing redox-active units are projected to be promising candidates as safe a...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
© 2020 Elsevier Ltd Electrochemical behavior of new phenothiazine derivative, N-phenyl-3-(phenylimin...
Organic cathode materials are promising candidates for a new generation of “green batteries”, since ...
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...
International audienceDifferent N-substituted phenothiazines have been synthesized and their electro...
In recent years, organic battery cathode materials have emerged as an attractive alternative to meta...
Organic materials are promising candidates for next-generation battery systems. However, many organi...
Organic cathode materials are a sustainable alternative to transition metal oxide‐based compounds in...
International audienceHuman activity generates an environmental impact increasingly important includ...
446 pagesOrganic molecules are capable of diverse redox chemistries. This capability has traditional...
Redox active polymers have received considerable attention within the past 25 years. The potential a...
Organic macromolecules bearing redox-active units are projected to be promising candidates as safe a...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
© 2020 Elsevier Ltd Electrochemical behavior of new phenothiazine derivative, N-phenyl-3-(phenylimin...