Organic materials are being investigated as an alternative to inorganic cathodes in lithium batteries with the promise of higher sustainability as well as increased theoretical capacity. Among organic materials, redox polymers based on poly(vinyl catechol) presenting the catechol/o-benzoquinone redox pair show high energy storage potential. Our main motivation in this work was to prepare polymer nanoparticles of different sizes and study their redox properties. As linear polymers are usually soluble/mechanically unstable, we prepared cross-linked polymers to maintain the size of the nanoparticles in different electrolytes. (Mini)emulsion polymerization of two dimethoxy monomers was used to synthesize spherical polymer nanoparticles cross-li...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
The work presented is focused on the development of polymers and polymer architectures to create red...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...
Organic materials are being investigated as an alternative to inorganic cathodes in lithium batterie...
Organic redox-active materials are actively being searched as a more sustainable alternative to trad...
[EN] Redox-polymer nanoparticles are a promising solution to avoid the detrimental dissolution of or...
The near future will put a lot of demand on the increasing need for energy production and storage. I...
Organic redox-active materials offer advantages of material tunability while maintaining high perfor...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Rechargeable batteries consisting of organic base electrodes are increasingly being studied as an al...
Organic polymer‐based batteries represent a promising alternative to present‐day metal‐based systems...
The development and synthesis of new polymers for organic batteries is a long and difficult process ...
peer reviewedOrganic electrode materials capable of reversible coordination/uncoordination of both m...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
The work presented is focused on the development of polymers and polymer architectures to create red...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...
Organic materials are being investigated as an alternative to inorganic cathodes in lithium batterie...
Organic redox-active materials are actively being searched as a more sustainable alternative to trad...
[EN] Redox-polymer nanoparticles are a promising solution to avoid the detrimental dissolution of or...
The near future will put a lot of demand on the increasing need for energy production and storage. I...
Organic redox-active materials offer advantages of material tunability while maintaining high perfor...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
Rechargeable batteries consisting of organic base electrodes are increasingly being studied as an al...
Organic polymer‐based batteries represent a promising alternative to present‐day metal‐based systems...
The development and synthesis of new polymers for organic batteries is a long and difficult process ...
peer reviewedOrganic electrode materials capable of reversible coordination/uncoordination of both m...
The development of organic electrode materials in rechargeable batteries has seen a resurgence in re...
The work presented is focused on the development of polymers and polymer architectures to create red...
The necessity to meet the ever-growing demand for energy while simultaneously reducing carbon emissi...