首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Enhanced Protective Properties and Structural Order of Self-Assembled Monolayers of Aromatic Thiols on Copper in Contact with Acidic Aqueous Solution
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Enhanced Protective Properties and Structural Order of Self-Assembled Monolayers of Aromatic Thiols on Copper in Contact with Acidic Aqueous Solution

机译:与酸性水溶液接触的芳族硫醇自组装单分子膜在铜上的增强保护性能和结构顺序

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摘要

In the present work we used different techniques to study self-assembled monolayers (SAMs) of two aromatic thiols, namely, benzenethiol (BT) and 2-naphthalenethiol (2-NT), and one alkylic thiol, 1-undecanethiol (1-UT), on polycrystalline copper, comparing their corrosion inhibition efficiency and their stability up to a week in H2SO4 0.5 M. Both electrochemical impedance spectroscopy (EIS) and linear polarization highlighted different aging trends for 1-UT on one side and aromatic thiols on the other. 1-UT was initially the best corrosion inhibitor among the three thiols, as expected fromits larger thickness, but it degraded very rapidly. On the contrary, BT and 2-NT showed a noticeable increase of their protective properties during the first hours of exposure to the electrolyte leading to a superior performance over any 1-UT sample. Raman spectroscopy suggested this behavior to be related to an enhancement of the structural order of the aromatic layer. In addition, both XP spectroscopy and electrochemical measurements revealed BT and 2-NT layers to be stabler than 1-UT. In particular, BT layers exposed to H2SO4 0.5 M exhibited better protective properties, with respect to the freshly prepared samples, lasting for over 1 week of aging.
机译:在目前的工作中,我们使用不同的技术研究了两种芳族硫醇的自组装单层(SAMs),即苯硫醇(BT)和2-萘硫醇(2-NT),以及一种烷基硫醇,1-十一烷硫醇(1-UT) ),在多晶铜上比较了它们在0.5 M的硫酸中的腐蚀抑制效率和稳定性,长达一周。电化学阻抗谱(EIS)和线性极化均突出了一侧1-UT和另一侧芳族硫醇的不同老化趋势。 。从其较大的厚度可以预期,1-UT最初是三种硫醇中最好的腐蚀抑制剂,但降解速度非常快。相反,BT和2-NT在暴露于电解质的最初几个小时内,其保护性能显着提高,从而导致其性能优于任何1-UT样品。拉曼光谱法表明该行为与芳族层结构顺序的增强有关。此外,XP光谱和电化学测量均显示BT和2-NT层比1-UT稳定。特别地,相对于新鲜制备的样品,暴露于0.5 M的H2SO4的BT层表现出更好的保护性能,可以持续1周以上的时效。

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