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Improving pitting corrosion resistance of the commercial titanium through graphene oxide-titanium oxide composite

机译:通过石墨烯氧化钛氧化钛复合材料改善商业钛的蚀腐蚀性

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摘要

Titanium oxide has been commonly used for wide range of applications due to excellent corrosion resistance. This study presents the impact of graphene oxide (GO) addition to titanium oxide as coating materials during titanium anodization process on the corrosion behaviour. The GO was prepared by electrochemical exfoliation using low voltage mode in a sodium sulphate electrolyte, which is easier and more environmentally friendly compared to the chemical approach. Raman and scanning electron microscope were used to examine the success of the exfoliation process. The surface morphologies and potentiodynamic polarization results indicate that the addition of GO significantly inhibit the pitting corrosion and stabilize passivation current densities over wide ranges of anodic potentials. The untreated titanium, however, noticeably displayed fluctuation of anodic current densities, confirming the presence of pitting corrosion. The results obtained by electrochemical impedance spectroscopy (EIS) also confirm that the addition of GO enhanced corrosion protection even at higher frequency ranges. The cyclic polarization scan results show a positive shift in the re-passivation potential Erep after the addition of GO. This work emphasizes that the addition of GO during anodization of titanium not only protect its surface from pitting corrosion but also provide a strong passive layer.
机译:由于优异的耐腐蚀性,氧化钛通常用于广泛的应用。本研究介绍了石墨烯氧化物(GO)加入氧化钛作为涂料期间涂料在腐蚀行为上的涂料。通过在硫酸钠电解质中使用低压模式的电化学剥离来制备Go,与化学方法相比,硫酸钠电解质中的低电压模式更容易和更环保。拉曼和扫描电子显微镜用于检查剥离过程的成功。表面形态和电位动力学偏振结果表明,在阳极电位的宽范围内,添加了显着抑制了蚀腐蚀并稳定钝化电流密度。然而,未处理的钛明显显示阳极电流密度的波动,确认存在点腐蚀。通过电化学阻抗谱(EIS)获得的结果也证实,即使在较高频率范围内也能够增加去增强的腐蚀保护。循环偏振扫描结果显示在添加后的重新钝化电位eREP中显示正偏移。这项工作强调,在钛的阳极氧化过程中添加了Go的添加不仅可以保护其表面免受蚀腐蚀而且还提供强大的无源层。

著录项

  • 期刊名称 Heliyon
  • 作者单位
  • 年(卷),期 2021(7),6
  • 年度 2021
  • 页码 e07289
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    机译:电化学氧化;电化学石墨烯氧化物剥离;偏振抗性;纳米粒子;电化学阻抗光谱(EIS);

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