Sun Xinzhi, Jin Hong, Qu Wangda
College of Chemistry and Pharmaceutical Sciences, Qingdao Agricultural University Qingdao 266109 China.
Xi'an Jiaotong University Suzhou Academy Suzhou 215123 China.
RSC Adv. 2021 Jun 1;11(32):19695-19704. doi: 10.1039/d1ra01754c. eCollection 2021 May 27.
In this work, we reported a new method to fabricate flexible carbon-based supercapacitor electrodes derived from a commercialized and low-cost lignin. The fabrication process skips traditional stabilization/carbonization/activation for lignin-based carbon production. Also, the process reported here was green and facile, with minimum solvent use and no pretreatment required. Characterization of the lignin showed that it has common properties among all types of lignin. The lignin was impregnated on carbon cloth and then subjected to direct laser writing to form the desired electrodes (LLC). The results showed that lignin was successfully bonded to carbon cloth. The LLC has a good porous carbon structure with a high / ratio of 1.39, and a small interlayer spacing of 0.3436 nm, which are superior to most of the reported lignin-based carbons. Although not optimized, the fabricated LLC showed good supercapacitance behavior with an areal capacitance of 157.3 mF cm at 0.1 mA cm. In addition, the superior flexibility of LLC makes it a promising electrode that can be used more widely in portable devices. Conceptually, this method can be generalized to all types of lignin and can define intriguing new research interests towards lignin applications.
在这项工作中,我们报道了一种新方法,用于制备由商业化低成本木质素衍生而来的柔性碳基超级电容器电极。该制备过程跳过了用于生产木质素基碳的传统稳定化/碳化/活化步骤。此外,这里报道的过程绿色且简便,溶剂使用量最少且无需预处理。对木质素的表征表明,它在所有类型的木质素中具有共同特性。将木质素浸渍在碳布上,然后进行直接激光写入以形成所需的电极(LLC)。结果表明,木质素成功地与碳布结合。LLC具有良好的多孔碳结构,其高 / 比为1.39,层间距 小,为0.3436 nm,优于大多数已报道的木质素基碳。尽管未进行优化,但所制备的LLC在0.1 mA cm 时表现出良好的超级电容行为,面积电容为157.3 mF cm 。此外,LLC卓越的柔韧性使其成为一种有前途的电极,可在便携式设备中更广泛地使用。从概念上讲,这种方法可以推广到所有类型的木质素,并可为木质素应用定义有趣的新研究方向。