The design and fabrication of high-performance all-plastic batteries is essentially important to achieve future flexible electronics. A major challenge in this field is the lack of stable and reliable soft organic electrodes with satisfactory performance. Here, a novel all-plastic-electrode based Li-ion battery with a single flexible bi-functional ladderized heterocyclic poly(quinone), (C6O2S2)n, as both cathode and anode is demonstrated. Benefiting from its unique ladder-like quinone and dithioether structure, the as-prepared polymer cathode shows a high energy density of 624 Wh kg−1 (vs lithium anode) and a stable battery life of 1000 cycles. Moreover, the as-fabricated symmetric full-battery delivers a large capacity of 249 mAh g−1 (at 2...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
The demand for secondary energy storage is ever increasing, being at the forefront of the transforma...
The cathode capacity of common lithium ion batteries (LIBs) using inorganic electrodes and liquid el...
Rechargeable batteries that use organic matter as the capacity-carrying material have previously bee...
The integration of intermittent renewable energy resources (e.g. solar and wind) requires the deploy...
The 21st century has been marked by an exponential increase in new and interconnected technologies a...
The cathode capacity of common lithium ion batteries (LIBs) using inorganic electrodes and liquid el...
International audienceThe present study reports superior electrochemical performance with capacity d...
Lithium-ion technologies show great promise to meet the demands that the transition towards renewabl...
As energy initiatives shift away from fossil fuels, research on renewable resources and their energy...
Li-ion batteries (LIBs) raise safety and environmental concerns, which mostly arise from their toxic...
Redox-active polymers are promising alternatives to traditional-metal-based electrode materials and,...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
The demand for secondary energy storage is ever increasing, being at the forefront of the transforma...
The cathode capacity of common lithium ion batteries (LIBs) using inorganic electrodes and liquid el...
Rechargeable batteries that use organic matter as the capacity-carrying material have previously bee...
The integration of intermittent renewable energy resources (e.g. solar and wind) requires the deploy...
The 21st century has been marked by an exponential increase in new and interconnected technologies a...
The cathode capacity of common lithium ion batteries (LIBs) using inorganic electrodes and liquid el...
International audienceThe present study reports superior electrochemical performance with capacity d...
Lithium-ion technologies show great promise to meet the demands that the transition towards renewabl...
As energy initiatives shift away from fossil fuels, research on renewable resources and their energy...
Li-ion batteries (LIBs) raise safety and environmental concerns, which mostly arise from their toxic...
Redox-active polymers are promising alternatives to traditional-metal-based electrode materials and,...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...
Polymers bearing redox-active groups can be successfully utilized as active electrode material in or...
peer reviewedRedox-active catechols are bioinspired precursors for ortho-quinones that are character...
Aqueous all-polymer batteries (AqPBs) are foreseen as promising solutions for safe, sustainable, and...