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首页> 外文期刊>Materials and Corrosion >Novel zinc-rich epoxy paint coatings with hydrated alumina and carbon nanotubes supported polypyrrole for corrosion protection of low carbon steel Part I: Inhibitor particles and their dispersions
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Novel zinc-rich epoxy paint coatings with hydrated alumina and carbon nanotubes supported polypyrrole for corrosion protection of low carbon steel Part I: Inhibitor particles and their dispersions

机译:具有水合氧化铝和碳纳米管的新型富锌环氧涂料涂层支持聚吡咯,用于低碳钢的腐蚀保护第一部分:抑制剂颗粒及其分散体

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In part 1 of this work, preparation, structure, spectroscopic, and electrochemical characteristics of the polypyrrole (PPy) deposited alumina/multi-walled carbon nanotubes (MWCNTs) inhibitor particles (PDAMIPs) are presented. TEM observations evidenced uniform deposition of thin PPy film on the functionalized nanotubes, whereas co-deposition of PPy and polystyrene sulfonic acid (PSS) lead to thick polymer coverage on hydrated alumina. Modification with polymer complexes resulted in moderately dispersed PDAMIPs, which is due to the various degrees of aggregation and coalescence. FTIR revealed compact and dense PPy structure on the functionalized MWCNTs while it was not the case on alumina and the PSS modified nanotubes. Closer interaction of PPy with the MWCNTs resulted in enhanced charge mobility, whereas greater electro-activity and reversibility of PPy were noted to samples containing functionalized nanotubes and low amount of PSS. Rheological study verified moderate micron-scale dispersity and the modification caused various degrees of aggregations of the PDAMIPs. These were recognized to be valid in the suspensions at a solid phase concentration with component contents similar to the corrosion tested hybrid coatings. Rheological percolation of the nanotubes (with anisotropic factor of ~100) was confirmed at volume fractions of 3.30×10~(-3) and 6.0×10~(-4) which were under the dilute/semi-dilute boundary type theoretical and experimental thresholds. This is related to the extensive interconnection of the nanotube-supported filaments. Thus, overlapping of the nanotubes should contribute to the electrical percolation thereby galvanic corrosion prevention function of the zinc-rich hybrid coatings, which is discussed in the 2nd part.
机译:在这项工作的第1部分中,介绍了聚吡咯(PPy)沉积的氧化铝/多壁碳纳米管(MWCNT)抑制剂颗粒(PDAMIP)的制备,结构,光谱和电化学特性。 TEM观察表明,在功能化的纳米管上均匀沉积了PPy薄膜,而PPy和聚苯乙烯磺酸(PSS)的共沉积导致在水合氧化铝上覆盖厚的聚合物。聚合物配合物的改性导致适度分散的PDAMIP,这是由于不同程度的聚集和聚结所致。 FTIR显示功能化的MWCNT上具有致密且致密的PPy结构,而氧化铝和PSS改性的纳米管则没有这种结构。 PPy与MWCNT的更紧密相互作用导致电荷迁移率提高,而包含功能化纳米管和少量PSS的样品则具有更高的电活性和PPy可逆性。流变学研究证实了中等的微米级分散性,并且改性引起了PDAMIPs的各种程度的聚集。这些在固相浓度的悬浮液中有效,其成分含量与经腐蚀测试的杂化涂料相似。在3.30×10〜(-3)和6.0×10〜(-4)的体积分数下,证实了纳米管的流变渗流(各向异性系数为〜100),这在理论/实验的稀释/半稀释边界下阈值。这与纳米管支撑的细丝的广泛互连有关。因此,纳米管的重叠应有助于电渗,从而防止富锌杂化涂层的电腐蚀预防功能,这将在第二部分中进行讨论。

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