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Bilayer polymer coating containing a polyaniline for corrosion protection of iron

机译:含聚苯胺的双层聚合物涂层,用于铁的腐蚀防护

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A poly(2-N-phenylamino-4,6-dimercapto-S-triazine) (PPDT) layer was first prepared electrochemically on an iron surface. The PPDT layer strongly adsorbed on the surface because of the polar triazine rings of the PPDT molecules. No electrochemical response of the PPDT layer-covered electrode to dissolved Fe(CN)_6~(3-) was observed. This fact indicated that the PPDT layer is an insulating layer with low permeability to dissolved species, and thus acting as a diffusion barrier against agents causing corrosion such as H_2O and O_2. A polymer polyaniline (PANI) layer was electrodeposited on the PPDT layer. This system was conductive because electron transfer through the PPDT layer occurred by electrons hopping utilizing the localized electron density of the triazine ring. The obtained PANI/PPDT bilayer coating greatly lowered the anodic current peak ascribed to the anodic dissolution of iron and the corrosion current. The high anti-corrosion ability was due to a hybrid effect of the PANI layer as an in-situ oxidant and the PPDT layer as a diffusion barrier.
机译:首先在铁表面上电化学制备聚(2-N-苯基氨基-4,6-二巯基-S-三嗪)(PPDT)层。由于PPDT分子的极性三嗪环,PPDT层强烈吸附在表面上。没有观察到覆盖PPDT层的电极对溶解的Fe(CN)_6〜(3-)的电化学反应。该事实表明,PPDT层是对溶解的物质具有低渗透性的绝缘层,并因此作为对引起腐蚀的试剂如H_2O和O_2的扩散阻挡层。将聚合物聚苯胺(PANI)层电沉积在PPDT层上。该系统是导电的,因为通过利用三嗪环的局部电子密度的电子跳跃发生了通过PPDT层的电子转移。所得的PANI / PPDT双层涂层大大降低了归因于铁的阳极溶解和腐蚀电流的阳极电流峰值。高防腐能力归因于PANI层作为原位氧化剂和PPDT层作为扩散阻挡层的混合效应。

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