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分子在绝缘表面上的自组装:基底模板和分子间相互作用的相互作用。

Molecular self-assembly on an insulating surface: interplay between substrate templating and intermolecular interactions.

机构信息

Institut für Physikalische Chemie, Johannes Gutenberg-Universität Mainz, Mainz, Germany.

出版信息

J Phys Condens Matter. 2012 Sep 5;24(35):354007. doi: 10.1088/0953-8984/24/35/354007. Epub 2012 Aug 16.

DOI:10.1088/0953-8984/24/35/354007
PMID:22899097
Abstract

We report on molecular self-assembly of biphenyl-4,4'-dicarboxylic acid (BPDCA) on CaCO3(1014) under ultra-high vacuum conditions. Two-dimensional, ordered islands are obtained upon deposition at room temperature, coexisting with a streaky structure that is ascribed to individual, mobile molecules forming a two-dimensional gas-like phase. High-resolution non-contact atomic force microscopy (NC-AFM) images of the molecular islands reveal an ordered inner structure that is dominated by rows of molecules aligned side by side running along the [4261] crystallographic direction. A detailed analysis of these rows exhibits inter-row distances that are multiples of the calcite unit cell dimension along the [0110] direction, clearly demonstrating the templating effect of the substrate. Our results indicate that an excellent size match of the molecular structure with respect to the underlying substrate results in an increased binding of the BPDCA molecules to the surface. In between the rows, a different molecular structure is coexisting with the molecules aligning head to tail. This structure is explained by intermolecular hydrogen bond formation very similar to the BPDCA bulk structure. The coexistence of the bulk-like structure with the row structure suggests a close balance of intermolecular and molecule-surface interactions to be responsible for the observed structure formation.

摘要

我们在超真空条件下报告了联苯-4,4'-二羧酸(BPDCA)在 CaCO3(1014)上的分子自组装。在室温下沉积时会得到二维有序的岛屿,同时还存在条纹状结构,这归因于单个移动分子形成二维气态相。分子岛屿的高分辨率非接触原子力显微镜(NC-AFM)图像显示出有序的内部结构,该结构主要由沿[4261]晶向排列的并排分子的行主导。对这些行的详细分析显示,沿[0110]方向的晶胞尺寸的倍数存在行间距离,这清楚地表明了基底的模板效应。我们的结果表明,分子结构与基底之间具有出色的尺寸匹配,从而增加了 BPDCA 分子与表面的结合。在行之间,与分子头对头对齐的分子共存着不同的分子结构。这种结构通过非常类似于 BPDCA 体相结构的分子间氢键形成来解释。体相结构与行结构的共存表明,分子间和分子-表面相互作用的紧密平衡是导致观察到的结构形成的原因。

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