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离子-电子导电中呈现协同效应的互穿网络聚合物

Complexes of Interpenetrating Polymer Networks Exhibiting Synergistic Effect of Ionic and Electronic Conductivities

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【作者】 谢洪泉黄旭东过俊石

【Author】 XIE Hong-Quan *, HUANG Xu-Dong, GUO Jun-Shi (Department of Chemistry, Huazhong University of Science and Technology, Wuhan 430074, China)

【机构】 华中科技大学化学系华中科技大学化学系 武汉430074武汉430074武汉430074

【摘要】 用 2 ,4-甲苯二异氰酸酯将蓖麻油及聚乙二醇 ( PEG)偶联成聚氨酯 ,同时通过自由基聚合使 2 -乙烯基吡啶 ( VP)与蓖麻油的双键共聚 ,生成互穿网络聚合物 ( IPN) ,其产率及凝胶含量大多超过 93 % ,力学性能很好 .当 IPN与 Li Cl O4 络合后呈现离子导电现象 ;与 TCNE或 TCNQ络合后产生电子导电 ,与 Li Cl O4 及TCNE( TCNQ)络合后 ,呈现比上述两种导电率更大且具有协同效应的混合导电率 ,在 2 5℃混合电导率可达到 1 0 - 3~ 1 0 - 2 S/cm.

【Abstract】 Interpenetrating polymer network was synthesized via reaction of castor oil, poly(ethylene glycol), toluene 2,4-diisocyanante and 2-vinyl pyridine in the presence of redox initiator and dibutyl tin dilaurate as the catalyst. Both yield and gel content of most IPNs are higher than 93%. The IPN was characterized by IR spectrum and gel content. The IPM obtained exhibits good mechanical properties, which are related with its crystallinity. When the IPN is complexed with LiClO 4, it exhibits an ion-conductivity, whereas when it is complexed with TCNE or TCNQ, it shows an electronic conductivity. When the IPN is complexed with both LiClO 4 and TCNE or TCNQ, it shows a mixed conductivity with a synergistic effect, i.e. the mixed conductivity is higher than either electronic conductivity or ionic conductivity. The mixed conductivity can reach 10 -3—10 -2 S/cm at room temperature.

【基金】 国家自然科学基金 (批准号 :2 92 74163 )资助
  • 【文献出处】 高等学校化学学报 ,Chemical Research In Chinese Universities , 编辑部邮箱 ,2004年05期
  • 【分类号】O631
  • 【被引频次】7
  • 【下载频次】226
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