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中国腐蚀与防护学报  2008, Vol. 28 Issue (1): 7-10     
  研究报告 本期目录 | 过刊浏览 |
聚吡咯的电化学合成及其对不锈钢的保护作用
李国希;朱日龙;刘晓阳
湖南大学化学化工学院
Electrosynthesis of polypyrrole and corrosion protection for stainles steel
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湖南大学化学化工学院
全文: PDF(962 KB)  
摘要: 根据聚吡咯(Ppy)的电化学自催化聚合特性,采用两步法在1Cr18Ni9不锈钢和Pt表面合成了导电高分子Ppy膜,研究其的氧化还原特性和不锈钢/Ppy在3.5% NaCl溶液中的腐蚀电化学行为。结果表明,Ppy有两个还原过程,分别对应于阴离子脱掺杂与阳离子嵌入,其氧化掺杂电位具有上限值。Ppy膜可使不锈钢表面形成致密的氧化膜,从而降低腐蚀速度,有效抑制不锈钢腐蚀。
关键词 导电高分子聚吡咯腐蚀不锈钢电化学聚合    
Abstract:A two-step electrosynthesis of polypyrrole film (Ppy) on 1Cr18Ni9 stainless steel and Pt substrates was performed based on the self-catalysed property of Ppy synthesis, and smooth conductive polymer film was obtained. The redox character of Ppy and corrosion behavior of stainless steel protected by Ppy film in 3.5% NaCl solution were investigated.Results show that the reduction of Ppy contains two processions including anion de-dopping and cation insertion, and that reversible oxidation (doping) can only occur at low potential. It is con?鄄firmed that stainless steel corrosion can be inhibited effectively by Ppy film and the physical barrier is not the major factor of corrosion protection.It is possible that Ppy coating has a catalytic effect on passivation of metal with protective oxide layer, and corrosion could be inhibited.
Key words
收稿日期: 2006-07-18     
通讯作者: 李国希      E-mail: liguoxi@hnu.cn

引用本文:

李国希; 朱日龙; 刘晓阳 . 聚吡咯的电化学合成及其对不锈钢的保护作用[J]. 中国腐蚀与防护学报, 2008, 28(1): 7-10 .

链接本文:

https://www.jcscp.org/CN/Y2008/V28/I1/7

[1]DeBerry D W.Modification of the electrochemical and corrosion be-havior of stainless steels with an electroactive coating[J].J.Elec-trochem.Soc.,1985,132(5):1022-1026
[2]Spinks G M,Dominis A J,Wallace G G.Comparison of emeral-dine salt,emeraldine base,and epoxy coatings for corrosion pro-tection of steel during immersion in a saline solution[J].Corro-sion,2003,59(1):22-31
[3]Jing X L,Wang Y Y,Qiang J F.Anti-corrosive property of emeral-dine base form of polyaniline[J].J.Chin.Soc.Corros.Prot.,2004,24(5):301-305(井新利,王杨勇,强军锋.本征态聚苯胺的防腐性能[J].中国腐蚀与防护学报,2004,24(5):301-305)
[4]Jiang Y F,Guo X W,Zhai C Q,et al.J.Research progress in corrosion prevention on metal with conductive polymers[J].J.Funct.Polym.,2002,15(4):473-479(蒋永锋,郭兴伍,翟春泉等.导电高分子在金属防腐领域的研究进展[J].功能高分子学报,2002,15(4):473-479)
[5]Grgur B N,Krstajic N V,Vojnovic M V,et al.The influence of polypyrrole films on the corrosion behavior of iron in acid sulfate solutions[J].Prog.Org.Coat.,1998,33(1):1-6
[6]Tüken T,Yazici B,Erbil M.The electrochemical synthesis and corrosion performance of polypyrrole on brass and copper[J].Prog.Org.Coat.,2004,51(2):152-160
[7]Tüken T,Arslan G,Yazici B,et al.The corrosion protection of mild steel by polypyrrole/polyphenol multilayer coating[J].Corros.Sci.,2004,46(11):2743-2754
[8]Zhang A Q,Guo X P.Preparation of Al/Al2O3/Ppy and its charac-teristic of impedance in a chloride contained solution[J].Corros.Prot.,2003,24(10):428-431(张爱勤,郭兴蓬.Al/Al2O3/Ppy的制备及其在含氯离子溶液中的阻抗特征[J].腐蚀与防护,2003,24(10):428-431)
[9]Fereira C A,Aeiyach S,Aaron J J,et al.Electrosynthesis of strongly adherent polypyrrole coatings on iron and mild steel in aqueous media[J].Electrochim.Acta,1996,41(11-12):1801-1809
[10]Aeiyach S,Zaid B,Lacaze P C.An one-step electrosynthesis of Ppy films on zinc substrates by anodic polymerization of pyrrole in aqueous solution[J].Electrochim.Acta,1998,44(17):2889-2898
[11]Reut J,$pik A,Idla K.Corrosion behavior of polypyrrole coated steel[J].Synth.Met.,1999,102(1-3):1392-1393
[12]Iroh J O,Su W C.Corrosion performance of polypyrrole coating applied to low carbon steel by an electrochemical process[J].Electrochim.Acta,2000,46(1):15-24
[13]Ehrenbeck C,Jüttner K,Ludwig S,et al.The electrochemical impedance of a free-standing polypyrrole membrane[J].Elec-trochim.Acta,1998,43(19-20):2781-2789
[14]Gao J S,Tian Z Q.Electrochemical and in-situ Raman spectro-scopic studies of dodecylbenzenesulfonate doped polypyrrole[J].J.Xiamen Univ.(Natural Science),1995,34:226-233(高劲松,田中群.十二烷基苯磺酸钠掺杂的聚吡咯的电化学和现场拉曼光谱[J].厦门大学学报(自然科学版),1995,34:226-233)
[15]Li Y F.Studies on conducting polypyrrole[J].Polym.Bull.,2005,(4):51-57(李永舫.导电聚吡咯的研究[J].高分子通报,2005,(4):51-57)
[16]Otero T F,Santamaria C.Kinetics of the polypyrrole electrogen-eration from aqueous solution.an ex situ microgravimetric study[J].Electrochim.Acta,1992,37(2):297-307
[17]Gabrielli C,Haas O,Takenouti H.Impedance analysis of elec-trodes modified with a reversible redox polymer film[J].J.Appl.Electrochem.,1987,17(1):82-90
[18]Nguyen H,Garcia B,Deslouis C,et al.Corrosion protection and conducting polymers:polypyrrole films on iron[J].Electrochim.Acta,2001,46(26-27):4259-4272
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