Interconnected hierarchical 3D porous carbon derived from Saccharum officinarum L . leaf based on the synergistic effect of KOH for high performance supercapacitor

Farma, Rakhmawati and Nurfitrah, Aditya Eka and Apriyani, Irma and Awitdrus, Awitdrus and Setiadi, Rahmondia Nanda and Chitraningrum, Nidya and Subhan, Achmad (2024) Interconnected hierarchical 3D porous carbon derived from Saccharum officinarum L . leaf based on the synergistic effect of KOH for high performance supercapacitor. Energy Sources Part A Recovery Utilization and Environmental Effects, 46 (1). pp. 12278-12291. ISSN 1556-7036, 1556-7230

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Abstract

Porous carbon has continuously been explored based on biomass for green energy storage due to its abundant, renewable, environmentally friendly resource, economical features, and thermal-chemical stability. Therefore, this study aimed to present porous carbon derived from sugarcane or Saccharum officinarum L. leaf as a precursor, achieved through a KOH activation strategy that combines a two-step pyrolysis process. The synthesized material exhibited an interconnected 3D hierarchical structure, a high specific surface area of 752 m2/g, and a carbon purity of 91.38%. Supercapacitor cell electrode had the highest specific capacitance of 471 F/g induced by 0.5 M KOH. Furthermore, in the 1 M H2SO4 electrolyte solution, the symmetrical supercapacitor cell electrodes produced the highest specific energy of 65.55 Wh/Kg at a specific power output of 329 W/Kg. As a result, a sustainable green method was established by using a biomass energy source that is applied as high-performance supercapacitor cell material.

Item Type: Article
Uncontrolled Keywords: Biomass; porous carbon; hierarchical 3D; specific capacitance; supercapacitor
Subjects: Environmental Pollution & Control
Materials Sciences
Depositing User: Rizzal Rosiyan
Date Deposited: 10 Sep 2026 02:28
Last Modified: 10 Sep 2026 02:28
URI: https://karya.brin.go.id/id/eprint/60297

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