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作 者:李相美[1] 徐学诚[1] 余维[2] 顾英俊 石岩[1] 成荣明[1] 陈奕卫[1]
机构地区:[1]华东师范大学纳米功能材料与器件应用研究中心,上海200062 [2]华东理工师范大学物理系
出 处:《化学研究与应用》2006年第6期663-666,共4页Chemical Research and Application
摘 要:本文以无水A lC l3作催化剂合成聚苯乙炔(PPA),用H2SO4对其进行磺化改性,采用其混法制得了PPA/碳纳米管(CNTs)及磺化PPA/CNTs复合材料,对二者的常温电导率及变温电导率进行了测试。结果表明:磺化PPA的电导率较PPA的提高了3个数量级;随着CMTs含量增加,复合材料的电导率升高;PPA/CNTs导电的阈值是3%,达极限电导率(0.04S/m)所需CNTs含量为25%,而磺化PPA/CNTs导电的阈值是2%,达极限电导率所需CNTs(0.14 s/m)含量为25%。并分析了温度变化对复合材料电阻变化的影响因素。Polyphenylacetylene(PPA) has been prepared with anhydrous AlCl3 as catalyst,and sulfonated by concentrated H2SO4. The conductivity of PPA/Carbon nanotubes(CNTs) and sulfonated PPA/CNTs composites is studied,which are prepared by blending CNTs with polymer in tetrahydrofuran under sonication. The result indicates that the conductivity of the sulfonated PPA has increased by 3 orders of magnitudes compared to PPA;and that the conductivity of the two kinds of composites is enhanced with the content of CNTs increasing under the room temporature;and that the estimated percolation threshold of PPA/CNTs is 3% ,which of sulfonated PPA/CNTs is 2% ;and that the amount of CNTs that are added to PPA for obtaining the maximum conductivity is 25%, which of sulfonated PPA/CNTs is 2. 5%. The conductive factors of the composites has been analyzed when the temperature changes.
关 键 词:碳纳米管(CNTs) 聚苯乙炔(PPA) 导电高分子
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