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烷酸和膦酸衍生的自组装单层在镁合金 AZ31 上的气相法耐腐蚀性能。

Corrosion resistant performances of alkanoic and phosphonic acids derived self-assembled monolayers on magnesium alloy AZ31 by vapor-phase method.

机构信息

National Institute of Advanced Industrial Science and Technology, 2266-98, Anagahora, Shimo-Shidami, Moriyama-ku, Nagoya 463-8560, Japan.

出版信息

Langmuir. 2011 May 17;27(10):6009-17. doi: 10.1021/la200122x. Epub 2011 Apr 19.

Abstract

Alkanoic and phosphonic acid derived self-assembled monolayers (SAMs) were formed on magnesium alloy by the vapor phase method. AFM and XPS studies showed that SAMs were formed on Mg alloy. The chemical and anticorrosive properties of the SAMs prepared on magnesium alloys were characterized using contact angle measurements, X-ray photoelectron spectroscopy (XPS), and electrochemical measurements. Water contact angle measurements revealed that, although SA and ISA have the same headgroup to anchor to the magnesium alloy surface, the packing density on the magnesium alloy surface could be considerably different. The contact angle hysteresis of SAMs with a carboxylate headgroup is much larger than that of SAMs with a phosphonic acid group. The XPS O 1s peaks indicated more likely a mix of mono-, bi-, or tridentate binding of phosphonic acid SAM to the oxide or hydroxide surface of the Mg alloy. The electrochemical measurements showed that the phosphonic acid derived SAM had better corrosion resistance compared to alkanoic acid derived SAM. The chemical stability of SAMs modified magnesium alloy was investigated using water contact angle and XPS measurements. The water contact angle and XPS measurements revealed that the molecular density of OP and PFEP on magnesium alloy would be higher than those of SA and ISA on magnesium alloy.

摘要

烷酸和膦酸衍生的自组装单层(SAMs)通过气相法在镁合金上形成。原子力显微镜和 X 射线光电子能谱(XPS)研究表明 SAMs 在 Mg 合金上形成。通过接触角测量、X 射线光电子能谱(XPS)和电化学测量对在镁合金上制备的 SAMs 的化学和耐腐蚀性能进行了表征。水接触角测量表明,尽管 SA 和 ISA 具有相同的头基来锚定镁合金表面,但在镁合金表面的组装密度可能有很大的不同。具有羧酸盐头基的 SAM 的接触角滞后比具有磷酸基团的 SAM 大得多。XPS O 1s 峰表明,磷酸 SAM 更有可能以单、双或三齿结合的方式与 Mg 合金的氧化物或氢氧化物表面结合。电化学测量表明,与烷酸衍生的 SAM 相比,磷酸衍生的 SAM 具有更好的耐腐蚀性。通过水接触角和 XPS 测量研究了 SAM 修饰镁合金的化学稳定性。水接触角和 XPS 测量表明,OP 和 PFEP 在镁合金上的分子密度将高于 SA 和 ISA 在镁合金上的分子密度。

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