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Interface chemistry and molecular interactions of phosphonic acid self-assembled monolayers on oxyhydroxide-covered aluminum in humid environments

机译:湿润环境中膦酸自组装单层在羟基氧化物覆盖的铝上的界面化学和分子相互作用

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摘要

Barrier properties of self-assembled octadecylphosphonic acid (ODPA) monolayers on plasma-modified oxyhydroxide-covered aluminum surfaces were analyzed by means of in situ photoelastic modulated infrared reflection absorption spectroscopy (PM-IRRAS). The surface hydroxyl density prior to ODPA adsorption was increased by means of a low-temperature H_2O-plasma treatment. Adsorption isotherms of H_2O on ODPA self-assembled monolayer (SAM) modified surfaces in comparison to bare oxide covered aluminum surfaces showed that the ODPA SAM leads to a strongly reduced amount of adsorbed water based on the inability of water to form hydrogen bonds to the low-energy aliphatic surface. However, the ODPA SAM covered surfaces did not show a significant inhibition of the H_2O/D_2O isotope exchange reaction between the D_2O gas phase and the hydroxyl groups of the aluminum oxyhydroxide film, as the interfacial layer between the ODPA SAM and the metal substrate, while the interfacial phosphonate group as well as the orientation of the SAM is not affected by the adsorption of water. It can be followed that the strong adhesion promoting and high corrosion resistances of organophosphonate monolayers on oxyhydroxide-covered aluminum is a result of the strong acid-base interaction of the phosphonate headgroup with the Al ions in the oxyhydroxide film, even in the presence of high interfacial water activity and the molecular interactions of the aliphatic chains. However, the barrier effect of such monolayers on the transport of water is negligible.
机译:通过原位光弹性调制红外反射吸收光谱法(PM-IRRAS)分析了等离子体改性的羟基氧化物覆盖的铝表面上的自组装十八烷基膦酸(ODPA)单层的阻隔性能。 ODPA吸附之前的表面羟基密度通过低温H_2O等离子体处理得以提高。与裸露的氧化物覆盖的铝表面相比,ODPA自组装单层(SAM)改性的表面上H_2O的吸附等温线表明,由于水无法形成低氢键,ODPA SAM导致吸附水的量大大减少。 -能量脂族表面。然而,ODPA SAM覆盖的表面并未显示出对D_2O气相与氢氧化铝铝膜的羟基之间的H_2O / D_2O同位素交换反应的显着抑制,因为ODPA SAM与金属基材之间的界面层界面膦酸酯基团以及SAM的方向不受水吸附的影响。可以理解,在羟基氧化物覆盖的铝上,有机膦酸酯单层具有很强的粘合促进能力和较高的耐腐蚀性是羟基氧化物薄膜中膦酸酯头基与Al离子的强酸碱相互作用的结果,即使在高温下也是如此。界面水活度和脂族链的分子相互作用。但是,这种单层对水的运输的阻挡作用可以忽略。

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