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contributor authorFarma, Rakhmawati
contributor authorWinalda, Bela
contributor authorApriyani, Irma
date accessioned2023-11-29T19:00:32Z
date available2023-11-29T19:00:32Z
date copyright12/5/2022 12:00:00 AM
date issued12/5/2022 12:00:00 AM
date issued2022-12-05
identifier issn2381-6872
identifier otherjeecs_20_2_020902.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4294520
description abstractSynthesized biomass-based carbonaceous materials from Palmae plant wastes with self-adhesive properties, converted into coin-like shapes, are used as supercapacitor electrodes with high power and energy density, high specific capacitance, excellent electrical conductivity, low cost, and environmentally friendly. Therefore, this study aims to investigate a simple and cost-effective method to generate porous carbon activation from Palmae plant waste biomass, namely areca leaf midrib (ALM). Activated carbon (AC) material derived from ALM was obtained through precarbonization, alkaline chemical activation, and two-step pyrolysis, namely carbonization and physical activation at 600 °C and 700 °C in the N2 as well as CO2 atmosphere, respectively. Its physical properties show an sp2 structure with high graphitization or amorphousness and two sloping peaks in the hkl plane at an angle of 2θ, approximately 24 deg and 44 deg. The electrochemical properties of AC supercapacitor cells derived from ALM biomass have the highest specific capacitance value of 216 F g−1 at a scan rate of 1 mV s−1 in a two-electrode system. Furthermore, the cell obtained a maximum energy density of 11 W h kg−1 and a power density of 196 W kg−1, respectively. Therefore, this study recommends an innovative and environmentally safe approach for producing high-performance supercapacitor cell electrodes for energy storage without adding nanomaterials and externally doped heteroatoms.
publisherThe American Society of Mechanical Engineers (ASME)
titleThe Self-Adhesive Properties of Carbon Activated-Like Shape Coin Derived From Palmae Plant Waste and Used as High-Performance Supercapacitor Electrodes
typeJournal Paper
journal volume20
journal issue2
journal titleJournal of Electrochemical Energy Conversion and Storage
identifier doi10.1115/1.4056268
journal fristpage20902-1
journal lastpage20902-7
page7
treeJournal of Electrochemical Energy Conversion and Storage:;2022:;volume( 020 ):;issue: 002
contenttypeFulltext


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