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Synthesis and Thermoelectric Properties of Polyaniline
作者姓名:刘军
作者单位:State Key
摘    要:1 IntroductionConductingpolymerspossessseveralattractivefea turesforusesasthermoelectricmaterialscomparabletotheinorganicsemiconductor .Theyarecheap ,light weight,andflexible ,especiallyforpolyanilinewhichisairstableandeasytobesynthesized .However ,manyofresearchesonconductingpolymerssofarhavebeencarriedoutaim ingtoobtainahigherelectricalconductivity ,whichisnotthebeststateforthermoelectricapplication .Thereareonlyfewstudiesthathavereportedconductingpolymersusedasthermoelectricmaterials1,2 ]…

收稿时间:30 October 2002
修稿时间:2 May 2003

Synthesis and thermoelectric properties of polyaniline
Liu?Jun,Zhang?Lian-meng,He?Li,Tang?Xin-feng.Synthesis and Thermoelectric Properties of Polyaniline[J].Journal of Wuhan University of Technology. Materials Science Edition,2003,18(3):53-55.
Authors:Liu Jun  Zhang Lian-meng  He Li  Tang Xin-feng
Affiliation:LIU Jun ZHANG Lian meng HE Li TANG Xin feng Wuhan University of Technology
Abstract:Electrical conductivity and seebeck coefficient at different temperatures,and thermal conductivity at room temperature for various doped polyaniline (PAn) samples were measured,and the thermoelectric figure of merit ZT was calculated.The effects of preparation methods and temperature on thermoelectric properties were discussed.The results show that the electrical conductivity and the seebeck coefficient of PAn are strongly dependent on the preparation conditions and temperature.The electrical conductivity becomes larger and the seebeck coefficient becomes smaller as PAn molecular weight increases.Redoping by organic acid and HCl results in an increase in both electrical conductivity and Seebeck coefficient of PAn,and therefore ZT value.The electrical conductivity increases and the seebeck coefficient decreases as the temperature increases when TT d.The thermal conductivity is lower,and insensitive to the sample preparation conditions.
Keywords:polyaniline  electrical conductivity  Seebeck coefficient  thermal conductivity  thermoelectric figure of merit
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