We report on the facile synthesis of porous carbons based on a biopolymer lignin employing a two-step process which includes the activation by KOH in various amounts under an inert gas atmosphere. The resulting carbons are characterized with regard to their structural properties and their electrochemical performance as an active material in double-layer capacitors using for the first time an ionic liquid (EMIBF4) as the electrolyte for this type of carbon material to enhance storage ability. A capacitance of more than 200 F g<sup>–1</sup> at 10 A g<sup>–1</sup> is achieved for a carbon with a specific surface area of more than 1800 m<sup>2</sup> g<sup>–1</sup>. One of the most crucial factors determining the electrochemical response of the ...
High-surface area carbons are produced from biomass-based products (wood sawdust and tannic acid) by...
Hydrothermal carbonization followed by chemical activation is utilized to convert paper pulp mill sl...
Converting lignin into advanced porous carbon materials, with desirable surface functionalities, can...
We report on the facile synthesis of porous carbons based on a biopolymer lignin employing a two-ste...
We synthesized mesoporous carbon from pre-cross-linked lignin gel impregnated with a surfactant as t...
Hierarchical porous carbon materials prepared by the direct carbonization of lignin/zeolite mixtures...
This article demonstrates the development of activated carbon fiber electrodes produced from hardwoo...
ABSTRACT: Lignin-derived porous carbons have great potential for energy storage applications. Howeve...
This report describes the utilization of waste lignin-derived activated carbons (LACs) as high-energ...
This work shows the potential application of carbon materials prepared by three different ionic liqu...
This review provides a summary of recent research progress towards biomass-derived carbon electrode ...
Supercapacitor (SC) with organic electrolyte or ionic liquid (IL) electrolyte can generally store/re...
Flexible electrodes with supercapacitance were developed from highly mesoporous carbon fibers synthe...
Lignin-based activated carbon fibers (ACFs) were prepared by electrospinning of hardwood acetic acid...
The process of stabilization is essential in the production of carbon fibers from lignins. During st...
High-surface area carbons are produced from biomass-based products (wood sawdust and tannic acid) by...
Hydrothermal carbonization followed by chemical activation is utilized to convert paper pulp mill sl...
Converting lignin into advanced porous carbon materials, with desirable surface functionalities, can...
We report on the facile synthesis of porous carbons based on a biopolymer lignin employing a two-ste...
We synthesized mesoporous carbon from pre-cross-linked lignin gel impregnated with a surfactant as t...
Hierarchical porous carbon materials prepared by the direct carbonization of lignin/zeolite mixtures...
This article demonstrates the development of activated carbon fiber electrodes produced from hardwoo...
ABSTRACT: Lignin-derived porous carbons have great potential for energy storage applications. Howeve...
This report describes the utilization of waste lignin-derived activated carbons (LACs) as high-energ...
This work shows the potential application of carbon materials prepared by three different ionic liqu...
This review provides a summary of recent research progress towards biomass-derived carbon electrode ...
Supercapacitor (SC) with organic electrolyte or ionic liquid (IL) electrolyte can generally store/re...
Flexible electrodes with supercapacitance were developed from highly mesoporous carbon fibers synthe...
Lignin-based activated carbon fibers (ACFs) were prepared by electrospinning of hardwood acetic acid...
The process of stabilization is essential in the production of carbon fibers from lignins. During st...
High-surface area carbons are produced from biomass-based products (wood sawdust and tannic acid) by...
Hydrothermal carbonization followed by chemical activation is utilized to convert paper pulp mill sl...
Converting lignin into advanced porous carbon materials, with desirable surface functionalities, can...