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SiC and N, S-doped carbon nanosheets and lignin-enhanced organohydrogel for low-temperature tolerant solid-state supercapacitors

INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES [2024]
Xiangyu Chen, Jiahua Ma, Xiaoshuai Sun, Chuanshan Zhao, Jiehua Li, Hui Li
ABSTRACT

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 2 and the sodium salt in RL as templates and sodium lignosulfonate as sulfur dopants for the pyrolysis process and use NH 4 Cl as a nitrogen dopant. This innovative approach results in a material with a remarkable specific surface area of 1659.19 m 2  g −1 , a specific capacitance of 308 F g −1 at a current density of 1 A g −1 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 −1 at 251 W kg −1 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.

MATERIALS

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