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Synthesis of Processable Polyaniline and its Anticorrosion Performance on 316LN Stainless Steel

机译:可加工聚苯胺的合成及其在316LN不锈钢上的防腐性能

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The soluble polyaniline (PANI) salts were synthesized by chemical-oxidative polymerization of aniline using sodium dodecylbenzene sulfonic acid, camphor sulphonic acid and hydrochloric acid as dopants and ammonium per sulphate (APS) as an oxidant. The synthesized PANI were characterized by X-ray diffraction, scanning electron microscope, Fourier transform-infrared spectroscopy and thermogravimetric analysis. It is found that the yield of PANI, electrical conductivity, solubility and thermal stability varies with the dopants and the stoichiometrics of monomer/dopant ratios. The PANI doped sample follows the solubility order as: PANI–SDBS > PANI–CSA > PANI–HCl. Thermal stability of PANI–CSA is grater than PANI–SDBS and PANI–HCl. XRD pattern shows the higher crystallinity for HCl and CSA doped PANI while SDBS doped PANI shows the poor crystallinity. SEM study revealed the partially crystalline and agglomerated morphology of the polymer. According to the results, the corrosion rate or corrosion current of PANI–SDBS salts coated samples varies with molar ratios of SDBS to aniline and the optimum molar ratio of PANI–SDBS coating to achieve the best anticorrosive performance on 316LN SS is 2.5 mol mol−1.
机译:使用十二烷基苯磺酸钠,樟脑磺酸和盐酸作为掺杂剂,过硫酸铵(APS)作为氧化剂,通过苯胺的化学氧化聚合反应合成可溶性聚苯胺(PANI)盐。通过X射线衍射,扫描电子显微镜,傅立叶变换红外光谱和热重分析对合成的PANI进行了表征。发现PANI的产率,电导率,溶解度和热稳定性随掺杂剂和单体/掺杂剂比率的化学计量而变化。掺杂PANI的样品的溶解度顺序为:PANI–SDBS> PANI–CSA> PANI–HCl。 PANI–CSA的热稳定性优于PANI–SDBS和PAN​​I–HCl。 XRD图谱显示HCl和CSA掺杂的PANI的结晶度较高,而SDBS掺杂的PANI的结晶度较差。 SEM研究揭示了聚合物的部分结晶和附聚形态。根据结果​​,PANI–SDBS盐涂层样品的腐蚀速率或腐蚀电流随SDBS与苯胺的摩尔比而变化,为实现316LN SS最佳防腐性能的PANI–SDBS涂层的最佳摩尔比为2.5 mol mol < sup> -1

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