Low cost, catalyst free, high performance supercapacitors based on porous nano carbon derived from agriculture waste

被引:97
作者
Bhat, Vinay S. [1 ,2 ]
Kanagavalli, Pandiyaraj [3 ,4 ]
Sriram, Ganesan [5 ]
Prabhu, Ramya B. [6 ]
John, Neena S. [6 ]
Veerapandian, Murugan [3 ,4 ]
Kurkuri, Mahaveer [5 ]
Hegde, Gurumurthy [1 ]
机构
[1] BMS Coll Engn, Ctr Nanomat & Displays, Bengaluru 560019, Karnataka, India
[2] Mangalore Univ, Dept Mat Sci, Mangalagangothri 574199, Karnataka, India
[3] CSIR, Cent Elect Res Inst, Electrod & Electrocatalysis Div, Karaikkudi 630003, Tamil Nadu, India
[4] Acad Sci & Innovat Res AcSIR, Ghaziabad 201002, India
[5] Jain Univ, Ctr Nano & Mat Sci, Jain Global Campus, Bengaluru 562112, Karnataka, India
[6] Ctr Nano & Soft Matter Sci CeNS, Bengaluru 560013, Karnataka, India
来源
JOURNAL OF ENERGY STORAGE | 2020年 / 32卷
关键词
Agriculture waste peels; Biowastes; Porous nano carbon; Self-doped; Supercapacitors; Stability; ACTIVATED CARBON; ELECTRODE MATERIALS; GARLIC SKIN; NITROGEN; CAPACITANCE; POROSITY;
D O I
10.1016/j.est.2020.101829
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
The present work exhibits experimental results obtained from the analysis of porous nano carbon synthesized from agriculture waste for the evaluation of high-performance supercapacitors. The material has been prepared by pyrolysis at different temperatures. All the synthesized materials were characterized using EDS, FE-SEM, TEM, FTIR, XPS, and Raman spectroscopy. Porous nature was determined from N2 sorption experiments. The electrochemical studies were done in three and two electrode setups. The maximum specific capacitance obtained was 174 F/g at 0.1 A/g in 4.0 M KOH electrolyte. The symmetric supercapacitor exhibited a specific capacitance of 119.2 F/g at 0.1 A/g and a specific energy of 32.6 Wh/kg. The device exhibited impeccable stability for 25,000 charge-discharge cycles, with 97.8% coulombic efficiency. Capacitance retention of 93% was observed even at the end of 10000th cycles, suggesting the huge capacity of biomass-derived non-activated carbon nanomaterials for efficient, stable high-performance electrodes in electrochemical energy storage applications.
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页数:11
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