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Transforming lignin into porous graphene via direct laser writing for solid-state supercapacitors

机译:通过直接激光写入将木质素转化为多孔石墨烯,用于固态超级电容器

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摘要

Cost-effective valorization of lignin into carbon-based electrode materials remains a challenge. Here we reported a facile and ultrafast laser writing technique to convert lignin into porous graphene as active electrode material for solid-state supercapacitors (SCs). During laser writing, alkaline lignin experienced graphitization. By controlling laser parameters such as power the porous structure and graphitization degree can be well modulated. Graphene obtained at 80% of laser power setting (LIG-80) had higher graphene quality and more porous structure than that obtained at the lower power levels ( i.e. , 50%, 70%). TEM images revealed that LIG-80 had few-layer graphene structure with fringe-like patterns. LIG-80 proved to be an active electrode material for SCs with a specific capacitance as high as 25.44 mF cm ~(?2) in a H _(2) SO _(4) /PVA gel electrolyte, which is comparable or even superior to SCs based on pristine LIG obtained from other carbon precursors. Taken together, our proposed technical route for lignin-based LIG and subsequent application in SCs would not only open a new avenue to lignin valorization, but also produce porous graphene from a renewable carbon precursor for energy storage applications.
机译:木质素在碳基电极材料中的成本有效的价衡仍然是一个挑战。在这里,我们报道了一种简便,超快的激光写入技术,可将木质素转化为多孔石墨烯,作为固态超级电容器(SC)的活性电极材料。在激光写入过程中,碱性木质素经历了石墨化。通过控制激光参数(例如功率),可以很好地调节多孔结构和石墨化程度。与在较低功率水平(即50%,70%)下获得的石墨烯相比,在80%激光功率设置(LIG-80)下获得的石墨烯具有更高的石墨烯质量和更多的多孔结构。 TEM图像显示LIG-80的石墨烯结构很少,具有条纹状图案。在H _(2)SO _(4)/ PVA凝胶电解质中,LIG-80被证明是SC的活性电极材料,比电容高达25.44 mF cm〜(?2),具有可比甚至更高的比基于从其他碳前体中获得的原始LIG的SC。综上所述,我们提出的基于木质素的LIG的技术路线及其在SC中的后续应用,不仅将为木质素的增值开辟一条新途径,而且将从可再生碳前驱体生产多孔石墨烯用于储能应用。

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