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高等学校化学研究 ›› 2001, Vol. 17 ›› Issue (3): 318-324.

• Articles • 上一篇    下一篇

Studies on the Coordination Polymer of Copper Electropolyurushiol

TANG Jie-yuan, ZHANG Wen-gong, SHEN Guo-cai, GAO Feng   

  1. Institute of Polymer Science, Fujian Teachers University, Fuzhou 350007, P. R. China
  • 收稿日期:2000-06-28 出版日期:2001-08-24 发布日期:2011-08-04
  • 基金资助:

    Supported by the National Natural Science Foundation of China.

Studies on the Coordination Polymer of Copper Electropolyurushiol

TANG Jie-yuan, ZHANG Wen-gong, SHEN Guo-cai, GAO Feng   

  1. Institute of Polymer Science, Fujian Teachers University, Fuzhou 350007, P. R. China
  • Received:2000-06-28 Online:2001-08-24 Published:2011-08-04
  • Supported by:

    Supported by the National Natural Science Foundation of China.

摘要: The coordination polymer of copper electropolyurushiol(EPU-Cu2+) was obtained by the reaction of copper chloride with electropolyurushiol (EPU) in an isopropyl alcohol solution.The properties of EPU-Cu2+ were studied by means of ESR, FTIR, XPS, DMTA and TG-DTA.The results of AES show that the content of Cu2+ was 8.63%.The electric resistances of EPUCu2+ and EPU were determined to be 9.37×1010Ω and 7.90×1010Ω respectively.It was also ascertained that in EPU-Cu2+ each Cu2+ is coordinated with two units hydroxyl in EPU, making the EPU-Cu2+ cross-link further.As a result, the title polymer exhibits an insolubility in most of organic solutions, a higher glass transition temperature and thermal resistance.

关键词: Urushiol, Electrochemical polymerization, Coordination polymer

Abstract: The coordination polymer of copper electropolyurushiol(EPU-Cu2+) was obtained by the reaction of copper chloride with electropolyurushiol (EPU) in an isopropyl alcohol solution.The properties of EPU-Cu2+ were studied by means of ESR, FTIR, XPS, DMTA and TG-DTA.The results of AES show that the content of Cu2+ was 8.63%.The electric resistances of EPUCu2+ and EPU were determined to be 9.37×1010Ω and 7.90×1010Ω respectively.It was also ascertained that in EPU-Cu2+ each Cu2+ is coordinated with two units hydroxyl in EPU, making the EPU-Cu2+ cross-link further.As a result, the title polymer exhibits an insolubility in most of organic solutions, a higher glass transition temperature and thermal resistance.

Key words: Urushiol, Electrochemical polymerization, Coordination polymer