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Microwave-assisted synthesis of nitrogen-doped pineapple leaf fiber-derived activated carbon with manganese dioxide nanofibers for high-performance coin- and pouch-cell supercapacitors
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Metadata
Document Title
Microwave-assisted synthesis of nitrogen-doped pineapple leaf fiber-derived activated carbon with manganese dioxide nanofibers for high-performance coin- and pouch-cell supercapacitors
Author
Kongthong T, Poochai C, Sriprachuabwong C, Tuantranont A, Nanan S, Meethong N, Pakawatpanurut P, Amornsakchai T, Sodtipinta J
Name from Authors Collection
Scopus Author ID
8532633300
Affiliations
Khon Kaen University; National Science & Technology Development Agency - Thailand; Khon Kaen University; Khon Kaen University; Khon Kaen University; Khon Kaen University; Mahidol University; Mahidol University; Khon Kaen University
Type
Article
Source Title
JOURNAL OF SCIENCE-ADVANCED MATERIALS AND DEVICES
ISSN
2468-2284
Year
2022
Volume
7
Issue
2
Page
-
Open Access
gold
Publisher
VIETNAM NATL UNIV
DOI
10.1016/j.jsamd.2022.100434
Format
Abstract
Herein, a composite between porous, N-doped, pineapple leaf fiber-derived activated carbon (PALF-NAC) and alpha-MnO2 nanofibers was investigated as an electrode material for high-performance supercapacitors (SCs). The nitrogen doping of pineapple leaf fiber-derived activated carbon resulted in an increase in N content from undetectable level to 2 wt%. PALF-NAC and alpha-MnO2 /PALF-NAC possessed mesoporous structures with high specific surface areas of 1054 and 772 m(2) g(-1), respectively. According to the three-electrode electrochemical measurement, the alpha-MnO2/PALF-NAC electrode in 1 M H2SO4 had a high specific capacitance of 195 F g(-1) at 0.1 A g(-1). In a coin-cell SC, this electrode in 1 M H2SO4 exhibited a high specific capacitance of 133 F g(-1) at a specific current of 0.1 A g(-1), with an excellent capacitance retention of up to 84.5% over 10000 charge-discharge cycles at the specific current of 0.5 A g(-1). An SC pouch cell employing the same electrodes and electrolyte revealed a high capacitance of 120 F at the current rating of 10 mA, with the energy and power of 26.8 Wh and 120.5 W, respectively. Thus, this new alpha-MnO2/PALF-NAC electrode can be used to develop stable, cost-effective, and high-performance supercapacitors. (C) 2022 Vietnam National University, Hanoi. Published by Elsevier B.V.
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Funding Sponsor
Basic Research Fund of Khon Kaen University [1500147]; Graduate School, Khon Kaen University; National Research Council of Thailand [MRG6080247]; Integrated Research Unit for Energy and Environment of Khon Kaen University [C10F630180]; Program Management Unit for National Competitiveness Enhancement (PMU-C), Thailand [C10F630180]
License
CC-BY-NC-ND
Rights
Vietnam National University
Publication Source
WOS