Ruiz-Rosas R, Valero-Romero M J, Salinas-Torres D, Rodríguez-Mirasol J, Cordero T, Morallón E, Cazorla-Amorós D
Instituto Universitario de Materiales de Alicante, Universidad de Alicante, Ap. 99, 03080, Alicante (Spain).
ChemSusChem. 2014 May;7(5):1458-67. doi: 10.1002/cssc.201301408. Epub 2014 Mar 26.
Hierarchical porous carbon materials prepared by the direct carbonization of lignin/zeolite mixtures and the subsequent basic etching of the inorganic template have been electrochemically characterized in acidic media. These lignin-based templated carbons have interesting surface chemistry features, such as a variety of surface oxygen groups and also pyridone and pyridinic groups, which results in a high capacitance enhancement compared to petroleum-pitch-based carbons obtained by the same procedure. Furthermore, they are easily electro-oxidized in a sulfuric acid electrolyte under positive polarization to produce a large amount of surface oxygen groups that boosts the pseudocapacitance. The lignin-based templated carbons showed a specific capacitance as high as 250 F g(-1) at 50 mA g(-1) , with a capacitance retention of 50 % and volumetric capacitance of 75 F cm(-3) at current densities higher than 20 A g(-1) thanks to their suitable porous texture. These results indicate the potential use of inexpensive biomass byproducts, such as lignin, as carbon precursors in the production of hierarchical carbon materials for electrodes in electrochemical capacitors.
通过木质素/沸石混合物的直接碳化以及随后对无机模板进行碱性蚀刻制备的分级多孔碳材料,已在酸性介质中进行了电化学表征。这些基于木质素的模板碳具有有趣的表面化学特征,例如各种表面氧基团以及吡啶酮和吡啶基团,与通过相同程序获得的基于石油沥青的碳相比,这导致了高电容增强。此外,它们在硫酸电解质中在正极化下容易被电氧化,以产生大量促进赝电容的表面氧基团。基于木质素的模板碳在50 mA g(-1) 时显示出高达250 F g(-1) 的比电容,由于其合适的多孔结构,在高于20 A g(-1) 的电流密度下电容保持率为50%,体积电容为75 F cm(-3) 。这些结果表明,廉价的生物质副产物,如木质素,作为碳前驱体在生产用于电化学电容器电极的分级碳材料方面具有潜在用途。