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Activated Carbon Monolith Derived from Coconut Husk Fiber as Electrode Material for Supercapacitor Energy Storage
Author(s) -
Erman Taer,
Verdy Manoto Naipospos,
Rika Taslim,
Agustino,
Apriwandi Apriwandi
Publication year - 2020
Publication title -
journal of physics. conference series
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.21
H-Index - 85
eISSN - 1742-6596
pISSN - 1742-6588
DOI - 10.1088/1742-6596/1655/1/012164
Subject(s) - supercapacitor , monolith , materials science , husk , activated carbon , pyrolysis , energy storage , capacitance , cyclic voltammetry , carbon fibers , chemical engineering , biomass (ecology) , fiber , porosity , composite material , electrode , chemistry , electrochemistry , organic chemistry , catalysis , composite number , botany , agronomy , adsorption , quantum mechanics , physics , engineering , biology , power (physics)
Biomass-derived porous activated carbon materials have been receiving considerable attention in energy-storage devices especially for supercapacitor due to abundant, renewable, sustainable, and cost-effective production. In this study, porous activated carbon material with monolithic form has been successfully prepared from coconut husk fiber through one-stage integrated pyrolysis and ZnCl 2 impregnation. Different physical activation temperature is the main focus in this study including 750, 800, 850, and 900 °C. The reduction of monolith dimensions such as mass, diameter, thickness and density have been reviewed as physical properties. Furthermore, the supercapacitor cells were performed with cyclic voltammetry t 1 M H 2 SO 4 aqueous electrolyte at low scan rate of 1 mV s −1 . The supercapacitor device based on the CFM-800 samples exhibited highest specific capacitance of 216 F g −1 . This sample also performed a promising performance with an energy density of 30.00 Whkg −1 and a high power density of 108.57 Wkg −1 . These results demonstrate that the coconut husk fiberhas been a high potential to as raw material for porous activated carbon monolith through low cost, vehicle and short-time processing with high-performance supercapacitors energy storage.

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