A novel renewable cathode made from earth abundant, low-cost materials can contribute to the intermittent storage needs of renewable energy-based society. In this work, we report for the first-time tannin from Nature as a cathode material. Our approach exploits the charge storage mechanism of the redox active quinone moiety. Tannins extracted from tree bark using environmental friendly aqueous solvents have the highest phenol content (5.56 mol g<sup>–1</sup>) among all the natural phenolic biopolymers, 5000 times higher than lignin. Tannins coupled with a conductive polymer polypyrrole acquire high specific capacitance values of 370 F g<sup>–1</sup> at 0.5 A g<sup>–1</sup> as well as excellent rate performance of 196 F g<sup>–1</sup> at 25 ...
International audienceSix porous carbon materials, produced by hydrothermal treatment of flavonoid t...
The development of new, scalable and inexpensive materials for low-cost and sustainable energy stora...
Nanostructured wood veneer with added electroactive functionality combines structural and functional...
The use of organic materials with reversible redox activity holds enormous potential for next-genera...
Biosourced and biodegradable organic electrode materials respond to the need for sustainable storage...
International audienceThe demand for efficient and cheap electrochemical storage devices is very hig...
8 figures, 1 table.-- Supplementary information available.-- © 2021. This manuscript version is made...
International audienceHard carbons are promising anode materials for Na-ion batteries that can be pr...
The redox reactions of quinones can be used in electrical energy storage systems. Biopolymers are on...
Despite revolutionizing the world of portable electronics, the contemporary lithium-ion battery (LIB...
Willow bark is a byproduct from forestry and is obtained at an industrial scale. We upcycled this by...
Zn-ion hybrid supercapacitors (ZHSCs) have been considered as a promising candidate for energy stora...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
8 figures, 2 tables, 1 scheme.-- Supplementary information available.Highly N- and O-doped carbons w...
International audienceSix porous carbon materials, produced by hydrothermal treatment of flavonoid t...
The development of new, scalable and inexpensive materials for low-cost and sustainable energy stora...
Nanostructured wood veneer with added electroactive functionality combines structural and functional...
The use of organic materials with reversible redox activity holds enormous potential for next-genera...
Biosourced and biodegradable organic electrode materials respond to the need for sustainable storage...
International audienceThe demand for efficient and cheap electrochemical storage devices is very hig...
8 figures, 1 table.-- Supplementary information available.-- © 2021. This manuscript version is made...
International audienceHard carbons are promising anode materials for Na-ion batteries that can be pr...
The redox reactions of quinones can be used in electrical energy storage systems. Biopolymers are on...
Despite revolutionizing the world of portable electronics, the contemporary lithium-ion battery (LIB...
Willow bark is a byproduct from forestry and is obtained at an industrial scale. We upcycled this by...
Zn-ion hybrid supercapacitors (ZHSCs) have been considered as a promising candidate for energy stora...
To meet future energy needs and to minimize CO2-emissions, a higher share of produced electricity mu...
8 figures, 2 tables, 1 scheme.-- Supplementary information available.Highly N- and O-doped carbons w...
International audienceSix porous carbon materials, produced by hydrothermal treatment of flavonoid t...
The development of new, scalable and inexpensive materials for low-cost and sustainable energy stora...
Nanostructured wood veneer with added electroactive functionality combines structural and functional...