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Domain structure of 17, 19-hexatriacontadiyne monolayers formed on graphite (0001) surfaces studied by UHV-STM

机译:用UHV-STM研究了在石墨(0001)表面上形成的17个19-六三aco二炔单分子层的畴结构

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Monolayers of 17, 19-hexatriacontadiyne (HTDY) formed by vapor deposition onto graphite (0001) surfaces were studied by scanning tunneling microscopy under ultrahigh vacuum. It has been found in a monolayer that HTDY molecules form lamella structures in which the alkyl chains are laid flat and arranged parallel to the graphite a_g axis. From the six-fold symmetry of the graphite (0001) surface and the C_(2h) symmetry of the molecule, six directions of lamellae are possible. HTDY molecules have high mobility at room temperature and form large domains. The mobility of the molecules is relatively low under 200 K, resulting in small domains. With these observations, we can explain the temperature dependence of polymerization reactions taking place in an HTDY monolayer to form sashlike macro-molecules.
机译:通过超高真空下的扫描隧道显微镜研究了通过气相沉积到石墨(0001)表面上形成的17、19-六三tri二炔(HTDY)的单分子层。在单层中已经发现HTDY分子形成薄片结构,其中烷基链平放并平行于石墨a_g轴布置。从石墨(0001)表面的六重对称性和分子的C_(2h)对称性来看,薄片的六个方向都是可能的。 HTDY分子在室温下具有很高的迁移率,并形成大区域。分子的迁移率在200 K以下相对较低,导致结构域较小。通过这些观察,我们可以解释在HTDY单层中形成扇形大分子的聚合反应的温度依赖性。

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