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首页> 外文期刊>Angewandte Chemie >Hydrophilicity and Microsolvation of an Organic Molecule Resolved on the Sub-molecular Level by Scanning Tunneling Microscopy
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Hydrophilicity and Microsolvation of an Organic Molecule Resolved on the Sub-molecular Level by Scanning Tunneling Microscopy

机译:扫描隧穿显微镜通过扫描在亚分子水平上分离的有机分子的亲水性和微透液化

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摘要

Low-temperature scanning tunneling microscopy was used to follow the formation of a solvation shell around an adsorbed functionalized azo dye from the attachment of the first water molecule to a fully solvated molecule. Specific functional groups bind initially one water molecule each, which act as anchor points for additional water molecules. Further water attachment occurs in areas close to these functional groups even when the functional groups themselves are already saturated. In contrast, water molecules surround the hydrophobic parts of the molecule only when the two-dimensional solvation shell closes around them. This study thus traces hydrophilic and hydrophobic properties of an organic molecule down to a sub-molecular length scale.
机译:使用低温扫描隧道显微镜从第一水分子的附着到完全溶解的分子中,沿着吸附的官能化的偶氮染料围绕溶剂化壳的形成。 特异性官能团最初结合一个水分子,其充当额外的水分子的锚点。 即使官能团本身已经饱和,也会发生进一步的水附着在靠近这些官能团的区域中。 相比之下,仅当二维溶剂化壳周围关闭时,水分子才围绕分子的疏水部件。 因此,该研究将有机分子的亲水性和疏水性疏水到亚分子长尺度下。

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