The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery
碩士 === 國立臺南大學 === 環境生態研究所碩士班 === 93 === Poly-3-methylthiophene was electropolymerized on LiCoO2 containing two kind of electric conduction carbon materials as positive electrode material for lithium ion battery. The conditions of electropolymerization poly-3-methylthiophene were be controlled by cur...
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ndltd-TW-093NTNT55870012017-06-24T04:44:44Z http://ndltd.ncl.edu.tw/handle/89151222612705535723 The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery 鋰離子二次電池正極材料鋰鈷氧之導電碳複合導電性高分子3-甲基噻吩特性研究 Wei-lun Ho 何緯倫 碩士 國立臺南大學 環境生態研究所碩士班 93 Poly-3-methylthiophene was electropolymerized on LiCoO2 containing two kind of electric conduction carbon materials as positive electrode material for lithium ion battery. The conditions of electropolymerization poly-3-methylthiophene were be controlled by current and time. These electrode materials were investigated by cyclic voltammetry, rate capability test, alternating-current impedance test, cycle life test, DSC test, SEM photography. The experimental results show that the conductive polymer modified electrode material using 0.1 mA galvanostatic at 5 min can be obtained the obvious promotion on cycle voltammetry, rate capability, impedance, cycle life properties. In addition, the heat stability would also improved by the conductive polymers modified electrode materials using by different electropolymerization conditions. The thermal decomposition temperature can be enhanced ca. 10 to 20 oC by the poly-3-methylthiophene modification. SEM morphologies show that the electrode materials surface modified by difference electropolymerization conditions can be observed large different. Chia-Chin Chang 張家欽 學位論文 ; thesis 118 zh-TW |
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碩士 === 國立臺南大學 === 環境生態研究所碩士班 === 93 === Poly-3-methylthiophene was electropolymerized on LiCoO2 containing two kind of electric conduction carbon materials as positive electrode material for lithium ion battery. The conditions of electropolymerization poly-3-methylthiophene were be controlled by current and time. These electrode materials were investigated by cyclic voltammetry, rate capability test, alternating-current impedance test, cycle life test, DSC test, SEM photography.
The experimental results show that the conductive polymer modified electrode material using 0.1 mA galvanostatic at 5 min can be obtained the obvious promotion on cycle voltammetry, rate capability, impedance, cycle life properties. In addition, the heat stability would also improved by the conductive polymers modified electrode materials using by different electropolymerization conditions. The thermal decomposition temperature can be enhanced ca. 10 to 20 oC by the poly-3-methylthiophene modification. SEM morphologies show that the electrode materials surface modified by difference electropolymerization conditions can be observed large different.
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author2 |
Chia-Chin Chang |
author_facet |
Chia-Chin Chang Wei-lun Ho 何緯倫 |
author |
Wei-lun Ho 何緯倫 |
spellingShingle |
Wei-lun Ho 何緯倫 The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
author_sort |
Wei-lun Ho |
title |
The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
title_short |
The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
title_full |
The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
title_fullStr |
The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
title_full_unstemmed |
The study of characteristics on mixed with conductive Polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
title_sort |
study of characteristics on mixed with conductive polymers poly(3-methylthiophene) and conductive carbon for lithium ion battery |
url |
http://ndltd.ncl.edu.tw/handle/89151222612705535723 |
work_keys_str_mv |
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