Porous polymer networks (PPNs) are attractive materials for capacitive energy storage because they offer high surface areas for increased double-layer capacitance, open structures for rapid ion transport, and redox-active moieties that enable faradaic (pseudocapacitive) energy storage. Here we demonstrate a new attractive feature of PPNs--the ability of their reduced forms (radical anions and dianions) to interact with small radii cations through synergistic interactions arising from densely packed redox-active groups, only when prepared as thin films. When naphthalene diimides (NDIs) are incorporated into PPN films, the carbonyl groups of adjacent, electrochemically generated, NDI radical anions and dianions bind strongly to K(+), Li(+), a...
The unique ability of combined ionic and electronic transport in conjugated, semiconducting polymers...
Redox-active organic molecules have attracted much attention as alternatives to transition-metal-bas...
One of the greatest challenges for our modern society is developing efficient and low-cost electroch...
Organic redox-active molecules are a promising platform for designing sustainable, cheap, and safe c...
Redox-active polymers, especially conjugated polymers, are of interest for use in battery electrodes...
Funding Information: This work was supported by the Swedish Research Council (grant 2015-04853) and ...
© The Royal Society of Chemistry 2020.Developing organic materials that show stable and highly rever...
This manuscript provides the first systematic characterization of the electrochemical properties of ...
Organic electrode materials are appealing candidates for a wide range of applications, including het...
Two pendant-type naphthalene diimide (NDI) polymers bearing a polynorbornene backbone were prepared ...
Aqueous organic redox flow batteries (AORFBs) have attracted increased interest as sustainable energ...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
It is an exciting time for exploring the synergism between the chemical and dimensional properties o...
The unique ability of combined ionic and electronic transport in conjugated, semiconducting polymers...
Redox-active organic molecules have attracted much attention as alternatives to transition-metal-bas...
One of the greatest challenges for our modern society is developing efficient and low-cost electroch...
Organic redox-active molecules are a promising platform for designing sustainable, cheap, and safe c...
Redox-active polymers, especially conjugated polymers, are of interest for use in battery electrodes...
Funding Information: This work was supported by the Swedish Research Council (grant 2015-04853) and ...
© The Royal Society of Chemistry 2020.Developing organic materials that show stable and highly rever...
This manuscript provides the first systematic characterization of the electrochemical properties of ...
Organic electrode materials are appealing candidates for a wide range of applications, including het...
Two pendant-type naphthalene diimide (NDI) polymers bearing a polynorbornene backbone were prepared ...
Aqueous organic redox flow batteries (AORFBs) have attracted increased interest as sustainable energ...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
Redox-active organic materials have emerged as promising alternatives to conventional inorganic elec...
Organic and polymeric electrodes have great properties and tenability enabling them to become high-e...
It is an exciting time for exploring the synergism between the chemical and dimensional properties o...
The unique ability of combined ionic and electronic transport in conjugated, semiconducting polymers...
Redox-active organic molecules have attracted much attention as alternatives to transition-metal-bas...
One of the greatest challenges for our modern society is developing efficient and low-cost electroch...