State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, PR China.
State Key Laboratory of Biobased Material and Green Papermaking, Qilu University of Technology, Shandong Academy of Sciences, Jinan 250353, PR China.
Int J Biol Macromol. 2024 Feb;258(Pt 1):128759. doi: 10.1016/j.ijbiomac.2023.128759. Epub 2023 Dec 14.
The rational design of porous carbon materials and hydrogel electrolytes with excellent mechanical properties and low-temperature tolerance are significance for the development of flexible solid-state supercapacitors. In this study, we introduce a novel methodology for synthesizing SiC/N, S-doped porous carbon nanosheets from bamboo pulp red liquor (RL). We leverage the SiO and the sodium salt in RL as templates and sodium lignosulfonate as sulfur dopants for the pyrolysis process and use NHCl as a nitrogen dopant. This innovative approach results in a material with a remarkable specific surface area of 1659.19 m g, a specific capacitance of 308 F g at a current density of 1 A g and excellent stability. Additionally, we harness alkali lignin extracted from RL to enhance a poly (vinyl alcohol) (PVA) matrix, creating a gel electrolyte with low-temperature tolerance and outstanding mechanical properties. A flexible solid-state supercapacitor, which incorporates our electrodes and gel electrolyte, demonstrates high energy density (5.2 W h kg at 251 W kg power density). Impressively, it maintains 82 % of its capacitance over 10,000 cycles of charge and discharge. This provides a new solution for the development of flexible solid-state supercapacitors.
设计具有优异的机械性能和耐低温性能的多孔碳材料和水凝胶电解质对于开发柔性固态超级电容器具有重要意义。在本研究中,我们介绍了一种从竹浆红液(RL)合成 SiC/N、S 掺杂多孔碳纳米片的新方法。我们利用 RL 中的 SiO 和钠盐作为模板,利用亚硫酸钠作为硫掺杂剂,并使用 NH4Cl 作为氮掺杂剂。这种创新方法得到了一种具有 1659.19 m²/g 比表面积、308 F/g 在 1 A/g 电流密度下的比电容和出色稳定性的材料。此外,我们利用 RL 中提取的碱木质素来增强聚(乙烯醇)(PVA)基质,制备了具有耐低温和优异机械性能的凝胶电解质。我们的电极和凝胶电解质组成的柔性固态超级电容器在 251 W/kg 的功率密度下具有 5.2 Wh/kg 的高能量密度。令人印象深刻的是,它在 10000 次充放电循环中保持 82%的电容。这为开发柔性固态超级电容器提供了一种新的解决方案。