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Self-assembly of organic acid molecules on the metal oxide surface of a cupronickel alloy

机译:有机酸分子在白铜合金金属氧化物表面上的自组装

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Corrosion of the metal oxide surface of cupronickel (CuNi) alloys is a problem in applications such as household water pipes, industrial pipelines, and marine vessels. On other substrates, thin films have been used as barriers to corrosion. Here, the formation of self-assembled monolayers (SAMs) on the CuNi metal oxide surface has been investigated. Stable, well-ordered SAMs of octadecylphosphonic acid (ODPA) and 16-phosphonohexadecanoic acid (COOH-PA) were formed on the metal oxide surface of CuNi foils (55% Cu/ 45% Ni) using a solution deposition method. The ODPA modified surfaces could be used to provide a non-reactive barrier that inhibits corrosion of the CuNi metal oxide surface. Meanwhile, COOH-PA films could be used for further surface reactions such as surface initiated polymerization, in which polymer coatings are grown directly from a well-ordered film. Film-modified surfaces were characterized using diffuse reflectance infrared Fourier transform spectroscopy, contact angle analysis, and matrix assisted laser desorption ionization time of flight mass spectrometry. The ability of the films to inhibit corrosion by limiting oxidation of the CuNi surface was assessed using cyclic voltammetry.
机译:铜镍合金(CuNi)的金属氧化物表面的腐蚀在诸如家用水管,工业管道和船舶等应用中是一个问题。在其他基材上,薄膜已被用作腐蚀的屏障。在这里,已经研究了在CuNi金属氧化物表面上形成自组装单分子膜(SAMs)。使用溶液沉积法在CuNi箔(55%Cu / 45%Ni)的金属氧化物表面上形成了十八烷基膦酸(ODPA)和16-膦酰基十六烷酸(COOH-PA)的稳定,有序的SAM。 ODPA改性的表面可用于提供抑制CuNi金属氧化物表面腐蚀的非反应性阻挡层。同时,COOH-PA膜可用于进一步的表面反应,例如表面引发的聚合反应,其中聚合物涂层直接从排列良好的膜中生长。使用漫反射红外傅里叶变换光谱,接触角分析和基质辅助激光解吸电离飞行时间质谱对膜修饰的表面进行表征。使用循环伏安法评估薄膜通过限制CuNi表面的氧化来抑制腐蚀的能力。

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