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H2S-induced reorganization of mixed monolayer of carboxylic derivatives on silver surface
期刊文章

H2S-induced reorganization of mixed monolayer of carboxylic derivatives on silver surface

Ming-Hsien Hsu, Wei-Shan Hu, Jan-Jan Lin, Yao-Jane Hsu, Der-Hsin Wei, Chih-Wen Yang, Chia-Seng ChangYu-Tai Tao
Langmuir, 卷.20(9), 頁碼.3641-3647
04/2004

摘要

Materials Science (all) Condensed Matter Physics Surfaces and Interfaces Spectroscopy Electrochemistry
The structure of self-assembled monolayers of p-terphenyl-4-carboxylic acid and the mixed monolayers of this acid with n-hexadecanoic acid on silver surface were studied by reflection-IR spectroscopy, nearedge X-ray absorption fine structure (NEXAFS) measurement, X-ray photoemission electron microscopy (X-PEEM), and atomic force microscopy. Exposure of the p-terphenyl-4-carboxylate monolayer to H 2 S vapor resulted in reorganization of the film structure into clusters of the corresponding free acids, in tens of nanometer dimension. Exposure of the mixed monolayer to H 2 S resulted in reorganization of the mixed monolayer film into phase-separated clusters of respective component molecules. The saturated aliphatic acid formed clusters of submicrometer size, whereas the p-terphenyl-4-carboxylic acid formed clusters of tens of nanometer size, presumably due to different surface mobility and/or intermolecular interaction of the two types of molecule. Restoration of the monolayer film from the clusters, driven by the reaction between the free acid molecules and the basic surface sites, proceeded at different speeds for the two types of molecules. The saturated acid monolayer was restored much faster than the p-terphenyl-4-carboxylic acid monolayer. A domain-separated monolayer in several micrometers scale was obtained. The process was imaged by tapping mode atomic force microscopy.

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