首页> 中文期刊> 《合成化学》 >Highly conductive and thermally stable self-doping propylthiosulfonated polyanilines

Highly conductive and thermally stable self-doping propylthiosulfonated polyanilines

         

摘要

A new type of highly conductive self-doping polyaniline, MPS-Pan, containing a sulfonic acid moiety covalently bonded to the polymer backbone through an electron-donating propylthio linkage has been successfully prepared via a novel concurrent reduction and substitution route. At a similar self-doping level, the resultant MPS-Pans displayed much higher conductivity than the corresponding sulfonated-polyaniline (S-Pan). Furthermore, for fully doped samples, contrary to the trend of decreasing conductivity with the sulfonation degree in S-Pan, the conductivity of MPS-Pan was found to increase with its substitution degree. These results agreed with the expectation that electron-deficient charge carriers (e.g. semiquinone radical cations) on acid-doped polyaniline chains will be better stabilized by the electron-donating alkylthio-substituent. Surprisingly, TG and XPS studies showed that MPS-Pan was thermally much more stable than S-Pan, with S-Pan started to lose its sulfonic acid dopant at 185 ℃, while MPS-Pan remained intact up to ca. 260 ℃.

著录项

  • 来源
    《合成化学》 |2004年第z1期|82-82|共1页
  • 作者

    Han Chien-Chung;

  • 作者单位

    Department of Chemistry, National Tsing Hua University, Hsinchu, China, Taiwan;

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