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In-Situ Growth of MnO2 Nanosheets on Biomass Waste for Long-Life Supercapacitors

delete2026-03-01
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PRE
AI
Z
Zhang, Yu
C
Chen, Xu
W
Wang, Weiguang
L
Li, Xueqin *
L
Li, Xiangyu *
DOI:10.1142/S1793292026500876delete
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Abstract

Abstract

En 中文
In the face of global energy security, environmental pollution, and climate change challenges, vigorously promoting the utilization of waste biomass is crucial for guarding the green water and green mountains, digging urban mines, and realizing the sustainable development of resources is the way to go. Durian shells represent an abundant lignocellulosic agricultural waste biomass, characterized by ready availability, an intrinsic porous structure, and significant fiber content. Utilizing DS as the carbon source, potassium hydroxide (KOH) and potassium permanganate (KMnO4) were synergistically employed as composite modifiers. Through the hydrothermal synthesis method, manganese dioxide (MnO2 ) was in-situ grown onto the DS carbon material, thereby preparing DS-based porous carbon, which has abundant pore structure. The findings reveal that when the mass ratio between KMnO(4 )and active DS carbon reaches 0.03, the resulting DCK-MnO2 -0.03 composite exhibited the optimal specific capacitance, achieving an amount of 334F & sdot;g(-1) at 0.5A & sdot;g(-1). Symmetrical supercapacitors assembled with DCK-MnO2 -0.03 exhibit energy densities of 15.56Wh & sdot;kg(-1 )and 13.9Wh & sdot;kg(-1 )at power densities of 622W & sdot;kg(-1) and 6250W & sdot;kg(-1), respectively. Furthermore, the assembled supercapacitor demonstrates remarkable cycle stability, maintaining 95.3% of its initial energy density after enduring 10000 cycles at a current density of 10A & sdot;g(-1).
Keywords:
Durian shell (DS)
porous carbon
pseudocapacitance supercapacitor
electrochemistry

Journal

Nano cover
Nano
IF:
1.1
Papers:
239
Citations:
1.7K

Organization

H
henan university of technology
Scholars:
2.4K
Papers: 707
Citations: 0
B
Beihua University
Scholars:
2.2K
Papers: 1.1K
Citations: 1.2K
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