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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Castor oil-TiO2 hyperbranched poly (ester amide) nanocomposite: a sustainable, green precursor-based anticorrosive nanocomposite coatings
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Castor oil-TiO2 hyperbranched poly (ester amide) nanocomposite: a sustainable, green precursor-based anticorrosive nanocomposite coatings

机译:蓖麻油 - TiO2超支化聚(酯酰胺)纳米复合材料:可持续的绿色前体抗腐蚀性纳米复合材料涂料

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In last decade study on anticorrosive performance of hyperbranched polymer nanocomposites attracted the overwhelming attention of researchers. However, scanty work on oleo hyperbranched polymer coatings are reported in the literature, while no work has been reported on castor oil-TiO2 nanoparticle dispersed hyper branched poly (ester amide) nanocomposite coatings. Thus, herein we report the synthesis and performance of TiO2 nanoparticle dispersed hyperbranched poly (ester amide) nanocomposite coatings on Physico-mechanical and anticorrosive coatings on carbon steel in 3.5 wt.% HCl, NaCl and NaOH solutions. The synthesis of hyperbranched polymer is based on the simple A(2)+B-3 polycondensation reaction. The structural elucidations of these were done using FTIR and NMR (H-1 and C-13) spectroscopy while the physico-mechanical tests were conducted by standard ASTM methods. The electrochemical corrosion techniques such as open circuit potential, potentiodynamic polarization, electrochemical impedance spectroscopy and salt spray tests were used to analyse the anticorrosive activity of these coatings. These studies revealed that the TiO2 dispersed hyperbranched poly (ester amide) coatings exhibit far superior physico-mechanical, hydrophobic (contact angle values from 98 degrees to 107 degrees) and anticorrosive properties (i(corr)9.89 x 10(-7) Acm(-2), E-corr-0.192V, impedance (similar to)10(5) Omega cm(2), phase angle 77 degrees and R-pore 3.7 x 10(6)) than those of hyperbranched poly (ester amide) and other such earlier reported coating systems.
机译:在过去的十年中,超支化聚合物纳米复合材料的防腐蚀性能研究了研究人员的压倒性关注。然而,在文献中报道了对Oleo超支化聚合物涂料的稀疏工作,而蓖麻油-TiO2纳米粒子分散的超分支聚(酯酰胺)纳米复合涂料没有任何作用。因此,本文在3.5重量%HCl,NaCl和NaOH溶液中报告了在3.5%的碳钢上的理物质和防腐涂层上的TiO2纳米颗粒分散的超支化聚(酯酰胺)纳米复合涂层的合成和性能。%HCl,NaCl和NaOH溶液。超支化聚合物的合成基于简单的A(2)+ B-3缩聚反应。使用FTIR和NMR(H-1和C-13)光谱完成这些结构阐明,同时通过标准ASTM方法进行物理机械测试。电化学腐蚀技术如开路电位,电位辐射极化,电化学阻抗光谱和盐喷雾试验用于分析这些涂层的防腐蚀活性。这些研究表明,TiO2分散的超支化聚(酯酰胺)涂层表现出远远优异的物理 - 机械,疏水(从98度到107度的接触角值)和防腐蚀性(I(COR)9.89×10(-7)ACM( -2),E-COR-0.192V,阻抗(类似于)10(5)ωcm(2),相角77度和R-孔3.7×10(6))比超支化聚(酯酰胺)。和其他此类早期报告的涂料系统。

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