Corrosion Resistances Feature of Polyaniline Film
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摘要: 提出同時利用聚苯胺的導電性、化學與電化學穩定性對金屬進行防腐保護的設想。探索用電化學方法在不銹鋼陽極上,從酸性苯胺溶液中合成致密的導電聚苯胺膜的條件。通過極化曲線測量得知,在3%NaCl和0.5mol/1H2SO4溶液中其腐蝕電位均為正值(相對于飽和甘汞電極),比不銹鋼基體正移了約(0.2~0.7)V,腐蝕電流比304不銹鋼或一般碳鋼約小3個數量級。當電位達到0.65V(在3%NaCl溶液中)或0.9V在0.5mol/1H2SO4中),聚苯胺膜會因過氧化而溶解脫落。在1mol/1HCl溶液中,聚苯胺膜不能改善樣品的耐腐蝕性能。Abstract: A suggest has been advanced on using simultaneously the electrical conductivity and chemical and electrochemical stability of polyaniline for protecting metal conductive materials. The conditions for polymerizing compact and conductive polyaniline films were explored by electrochemical methods on a stainless steel anode in acidic aqueous solution. The polyaniline films obtained don't dissolve in NaOH or NaCl aqueous solution. The corrosion resistances of the polyaniline modified stainless steel were measured through polarization curves. In comparing polyaniline modified stainless steel specimens with unmodified ones the corrosion potentials in 3% NaCl and H2SO4 aqueous solution remarkably moved about 0.2-0.7 V towards the positive direction and were positive vs. saturated calomel electrode. The corrosion current densities were lower than those of 304 stainless steel and carbon steel about three orders of magnitude. The polyaniline layer would dissolve and fall off because of over-oxidation when the potential arose to 0.65V (in 3% NaCl aqueous solution) or 0.9V (in 0.5mol/l H2SO4). In 1mol/l HCl aqueous solution the polyaniline film was not able to offer protection for stainless steel specimens.
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Key words:
- polyaniline /
- corrosion /
- electrical conductivity /
- dynamicpotential scan curve
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