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Characterization and Comparison of Conducting Polyaniline Synthesized by Three Different Pathways 被引量:2

Characterization and Comparison of Conducting Polyaniline Synthesized by Three Different Pathways
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摘要 The conducting polyaniline (PANI) prepared by three chemical oxidative polymerization pathways including microemulsion, emulsion and aqueous solution methods were studied and compared. Their structures, morphologies and properties were characterized using FT-IR, XRD, TEM and TGA. PANI particles formed in aqueous solution have a smallest size and doping HCl enables to increase their conductivity. In contrast, PANI particles prepared by emulsion method have the highest thermal stability and conductivity and more ordered morphology. Rather different from these two methods, microemulsion approach allows forming nanocomposite PANI with tube-like nanostructure. The conducting polyaniline (PANI) prepared by three chemical oxidative polymerization pathways including microemulsion, emulsion and aqueous solution methods were studied and compared. Their structures, morphologies and properties were characterized using FT-IR, XRD, TEM and TGA. PANI particles formed in aqueous solution have a smallest size and doping HCl enables to increase their conductivity. In contrast, PANI particles prepared by emulsion method have the highest thermal stability and conductivity and more ordered morphology. Rather different from these two methods, microemulsion approach allows forming nanocomposite PANI with tube-like nanostructure.
作者 董超芳
出处 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2011年第6期1068-1072,共5页 武汉理工大学学报(材料科学英文版)
基金 Funded by the National Natural Science Foundation of China ( No. 50771020)
关键词 nano materials POLYMERS POLYANILINE nano materials polymers polyaniline
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  • 1Luzny W, Banka E. Relations between the Structure and Electric Conductivity of Polyaniline Protonated with Camphorsulfonic Acid[J]. Macromolecules, 2000,33:425-429.
  • 2Wang HL, MacDiarrnid AG, Wang YZ, Gebler DD, Epstein ALl. Application of Polyaniline( Emeraldine Base, EB) in Polymer Light-emitting Devices[J]. Synth. Met., 1996,78:33-37.
  • 3Stejskal J, Riede AD, Hlavat~i D, Proke~ J, Helmstedt M, Holler P. The Effect of Polymerization Temperature on Molecular Weight, Crystallinity, and Electrical Conductivity of Polyanilne[J]. Synth. Met., 1998,96:55-61.
  • 4Kim BJ, Oh SG, Han MG, Im SS. Preparation of Polyaniline Nanoparticles in Micellar Solutions as Polymerization Medium[J]. Langmuir, 2000,16:5 841-5 845.
  • 5Srinivasan P, Amalraj J. Polyaniline Materials by Emulsion Polymerization Pathway[J]. Prog. Polym. Sci., 2008, in press.
  • 6Srinivasan P. Preparation of Polyaniline-sulfate Salt by Emulsion and Aqueous Polymerization Pathway without Using Protonic Acid[J]. Polym. Adv. Technol., 2002,13:54-59.
  • 7Huang K, Meng XH, Wan M. Polyaniline Hollow Microspheres Constructed with Their Own Self-assembled Nanofibers[J]. J. Appl. Polym. Sci., 2006,100:3050-3054.
  • 8Zhou Q, Wang J, Ma Y, Cong C, Wang F. The Relationship of Conductivity to the Morphology and Crystallinity of Polyaniline Controlled by Water Content via Reverse Microemulsion[J]. Colloid. Polym. Sci.,2007,285:405-411.
  • 9Yan F, Xue G. Synthesis and Characterization of Electrically Conducting Polyaniline in Water-oil Microemulsion[J]. J.Mater. Chem., 1999,9:3035-3039.
  • 10Kulszewicz-Bajer I, Sobezak J, Hasik M, Pretula J. Spectroscopic Studies of Polyaniline Protonation with Poly( Alkylene Phosphates)[J]. Polymer, 1996,37:25-30.

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