Khco3 Chemical-Activated Hydrothermal Porous Carbon Derived from Jackfruit Inner Skin for Supercapacitor Applications

22 Pages Posted: 13 May 2024

See all articles by Liujie Wang

Liujie Wang

Xinxiang University

Wenbo Li

Xinxiang University

Pengfa Li

Xinxiang University

Laiping Zhang

Xinxiang University - School of Chemistry and Materials Engineering

li li

Xinxiang University

Abstract

The reuse of waste biomass resources had become a hot topic in the sustainable development of human society. Biomass was an ideal precursor for preparing porous carbon. However, due to the complexity of biomass composition and microstructure, the quality reproducibility of biomass porous carbon was poor. Therefore, it was of great significance to develop a reliable method for preparing porous carbon from biomass. In this paper, The activated hydrothermal porous carbon was prepared by a combination of hydrothermal carbonization treatment and KHCO3 mild activation. The hydrothermal carbonization treatment could complete the morphology adjustment and iron doping of the carbon in one step, and the mild activation of KHCO3 could activate the porous carbon while maintaining the spherical morphology. Fe-modified porous carbon with carbon ball/nanosheet structure which facilitated ion/electrolyte diffusion and increased accessibility between surface area and electrolyte ions. Therefore, the Jackfruit inner skin derived activated porous carbon had good specific capacitance (273.2 F/g at 1 A/g) and good cycle stability, with a capacitance loss of only 6.2% after 5000 charge-discharge cycles. This study showed that the combination of hydrothermal treatment and mild activation provided an effective way for the conversion of waste biomass into high-performance electrode materials.

Keywords: waste biomass,porous carbon,mild activation,hydrothermal carbonization

Suggested Citation

Wang, Liujie and Li, Wenbo and Li, Pengfa and Zhang, Laiping and li, li, Khco3 Chemical-Activated Hydrothermal Porous Carbon Derived from Jackfruit Inner Skin for Supercapacitor Applications. Available at SSRN: https://ssrn.com/abstract=4826454 or http://dx.doi.org/10.2139/ssrn.4826454

Liujie Wang

Xinxiang University ( email )

Xinxiang
China

Wenbo Li

Xinxiang University ( email )

Xinxiang
China

Pengfa Li

Xinxiang University ( email )

Xinxiang
China

Laiping Zhang

Xinxiang University - School of Chemistry and Materials Engineering ( email )

Xinxiang
China

Li Li (Contact Author)

Xinxiang University ( email )

Xinxiang
China

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