PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors

碩士 === 逢甲大學 === 材料科學所 === 90 === The PAN-based activated carbon fiber cloth was provided by Taiwan Carbon Co. Ltd.. The relation between activated carbon fibers and performance with electric double-layer capacitors was studied. The crystalline structure of activated carbon fibers are turbostratic...

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Main Authors: Lee Chung-tse, 李宗澤
Other Authors: Tse-Hao Ko
Format: Others
Language:zh-TW
Published: 2002
Online Access:http://ndltd.ncl.edu.tw/handle/89k3ps
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spelling ndltd-TW-090FCU051590062018-05-10T04:22:14Z http://ndltd.ncl.edu.tw/handle/89k3ps PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors 聚丙烯腈系活性碳纖維布製備電雙層電容 Lee Chung-tse 李宗澤 碩士 逢甲大學 材料科學所 90 The PAN-based activated carbon fiber cloth was provided by Taiwan Carbon Co. Ltd.. The relation between activated carbon fibers and performance with electric double-layer capacitors was studied. The crystalline structure of activated carbon fibers are turbostratic structure by XRD analysis and Raman spectropy. In CV test, PAN 1600 and PAN1800 still have capacitance behavior at high speed scan rate (100 mV/s), but PAN 1050 and PAN1200 must slow down scan rate. The specific capacitance is not dependent on specific area. In CA test, The peak current of PAN1600 and PAN1800 are higher due to low resistivity. In CA test was use small discharged current, PAN1050 and PAN1200 have higher surface oxygen amount and also have higher capacitance. In Impedance test, activated carbon fibers with low resistivity have the ability of fast charge-discharge rate. Ideal electric double-layer capacitor must consider to both capacitance and charge-discharge rate. Electric double-layer capacitors divide to energy-type and power-type in real application. The experiment is concluded then PAN1600 and PAN1800 is more suitable for power-type design, but PAN1050 and PAN1200 is more suitable for energy-type. Tse-Hao Ko 柯澤豪 2002 學位論文 ; thesis 65 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 逢甲大學 === 材料科學所 === 90 === The PAN-based activated carbon fiber cloth was provided by Taiwan Carbon Co. Ltd.. The relation between activated carbon fibers and performance with electric double-layer capacitors was studied. The crystalline structure of activated carbon fibers are turbostratic structure by XRD analysis and Raman spectropy. In CV test, PAN 1600 and PAN1800 still have capacitance behavior at high speed scan rate (100 mV/s), but PAN 1050 and PAN1200 must slow down scan rate. The specific capacitance is not dependent on specific area. In CA test, The peak current of PAN1600 and PAN1800 are higher due to low resistivity. In CA test was use small discharged current, PAN1050 and PAN1200 have higher surface oxygen amount and also have higher capacitance. In Impedance test, activated carbon fibers with low resistivity have the ability of fast charge-discharge rate. Ideal electric double-layer capacitor must consider to both capacitance and charge-discharge rate. Electric double-layer capacitors divide to energy-type and power-type in real application. The experiment is concluded then PAN1600 and PAN1800 is more suitable for power-type design, but PAN1050 and PAN1200 is more suitable for energy-type.
author2 Tse-Hao Ko
author_facet Tse-Hao Ko
Lee Chung-tse
李宗澤
author Lee Chung-tse
李宗澤
spellingShingle Lee Chung-tse
李宗澤
PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors
author_sort Lee Chung-tse
title PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors
title_short PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors
title_full PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors
title_fullStr PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors
title_full_unstemmed PAN-based activated carbon fiber cloth fabricated electric double-layer capacitors
title_sort pan-based activated carbon fiber cloth fabricated electric double-layer capacitors
publishDate 2002
url http://ndltd.ncl.edu.tw/handle/89k3ps
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