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磁場作用下大分子酸摻雜聚苯胺性能

Properties of polyaniline doped by macromolecular acid in magnetic field

  • 摘要: 研究了在0.2 T的磁場作用下,采用微乳液法以十二烷基苯磺酸鈉(SDBS)為乳化劑,過硫酸銨(APS)為氧化劑,大分子磺基水楊酸(SSA)為摻雜劑制備導電聚苯胺(PAn),并結合紅外光譜、X射線衍射、粒徑分析、電導率等手段對其結構及性能進行表征.結果顯示:磁場作用可以提高PAn的電導率、摻雜度和腐蝕電位,但對PAn基本單元結構沒有影響;與無磁場條件下合成的PAn相比,磁場條件下合成的PAn具有更高的結晶度和明顯的微觀取向結構,且反應時間從3 h減少到2 h,摻雜酸濃度(CSSA)從0.4 mol·L-1減小到0.3 mol·L-1,乳化劑與苯胺單體的摩爾比(nSDBS/nAn)從0.6減少到0.45,PAn的電導率從0.85 S·cm-1增加到1.55 S·cm-1.

     

    Abstract: Under the presence of a constant magnetic field (0.2T), conducting polyaniline (PAn) was synthesized by microemulsion polymerization with sodium dodecylbenzenesulfonate (SDBS) as emulsifier, ammonium peroxydisulfate (APS) as oxidant and sulfosalicylic acid (SSA) as doping agent. The properties and structure of PAn were characterized by infrared spectrum, X-ray diffraction, particle-size analysis and conductivity measurement. The results indicate that the conductivity, doping ratio and corrosive potential of PAn are improved under the presence of magnetic filed, and no effect of magnetic field on the basic structural units of PAn is observed. Compared with the PAn synthesized under the absence of magnetic field, the PAn synthesized under the presence of magnetic field has a higher crystaUinity and obvious microscopic orientation structure, the polymerization time decreases from 3 to 2 h, the concentration of doped acid (CSSA) decreases from 0.4 to 0.3 mol·L-1, the mole ratio of SDBS and aniline monomer (nSDBS/nAn) decreases from 0.6 to 0.45, and the conductivity of PAn increases from 6.42S·cm-1 to 10.01 S·cm-1.

     

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