首页> 外文会议>218th National Meeting of the American Chemical Society, Aug 22-26, 1999, New Orleans, Louisiana >Kinetics and Domain Formation in Surface Reactions by Inverted Chemical Force Microscopy and FTIR Spectroscopy
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Kinetics and Domain Formation in Surface Reactions by Inverted Chemical Force Microscopy and FTIR Spectroscopy

机译:逆化学力显微镜和FTIR光谱分析表面反应的动力学和结构域

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Reaction kinetics of the alkaline hydrolysis of ester groups at the surface of self-assembled monolayers was monitored by a combination of atomic force microscopy (AFM) and FT-IR spectroscopy. In a novel approach, which we termed ,,inverted" chemical force microscopy (CFM), reactions are studied which take place at the surface of the tip coated with the reactants. The course of the reaction is followed in situ on a scale of less than 100 molecules, corresponding to the contact area between AFM tip and the sample surface at pull-off, by recording force-distance curves. Reactivity differences related to the structure of the monolayers, observed by inverted CFM on the nanometer scale, agree well with average behavior observed by FT-IR. The combined results, together with additional force microscopy data, support the conclusion that for closely packed ester groups, the reaction spreads from defect sites, causing separation of the homogeneous surface into domains of reacted and unreacted molecules.
机译:通过原子力显微镜(AFM)和FT-IR光谱学的结合监测自组装单分子层表面酯基的碱性水解反应动力学。在一种新颖的方法中,我们称其为“倒置”化学力显微镜(CFM),研究了反应在覆盖有反应物的尖端表面上发生的过程。通过记录力-距离曲线,得到了100个分子,分别对应于AFM尖端与剥离时样品表面之间的接触面积。通过倒置CFM在纳米尺度上观察到的与单层结构相关的反应性差异与FT-IR观察到的平均行为,合并的结果以及其他力显微镜数据支持以下结论:对于紧密堆积的酯基,反应从缺陷部位扩散,导致均相表面分离为已反应和未反应分子的区域。

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