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Complex Interplay and Hierarchy of Interactions in Two-Dimensional Supramolecular Assemblies

机译:二维超分子组装中的复杂相互作用和相互作用层次。

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摘要

In order to address the interplay of hydrogen bonding, dipolar interactions, and metal coordination, we have investigated the two-dimensional mono- and bicomponent self-assembly of three closely related diaminotriazine-based molecular building blocks and a complementary perylenetetracarboxylic diimide by means of scanning tunneling microscopy. The simplest molecular species, bis-diaminotriazine-benzene, only interacts via hydrogen bonds and forms a unique supramolecular pattern on the Au(111) surface. For the two related molecular species, which exhibit in addition to hydrogen bonding also dipolar interactions and metal coordination, the number of distinct supramolecular structures increases dramatically with the number of possible interaction channels. Deposition together with the complementary perylene species, however, always results in a single well-defined supramolecular arrangement of molecules. A detailed analysis of the observed mono- and bicomponent assemblies allows shedding light on the hierarchy of the competing interactions, with important implications for the fabrication of surface-supported supramolecular networks by design.
机译:为了解决氢键,偶极相互作用和金属配位的相互作用,我们通过扫描研究了三个紧密相关的基于二氨基三嗪的分子结构单元和互补的ylene四羧酸二酰亚胺的二维单组分和双组分自组装。隧道显微镜。最简单的分子物种双-二氨基三嗪-苯仅通过氢键相互作用,并在Au(111)表面上形成独特的超分子模式。对于除了氢键以外还表现出偶极相互作用和金属配位的两个相关分子物质,独特的超分子结构的数量随着可能的相互作用通道的数量而急剧增加。然而,与互补per分子一起沉积总是导致分子的单一明确定义的超分子排列。对观察到的单组分和双组分组装的详细分析,使我们可以了解竞争性相互作用的层次,这对通过设计制造表面支撑的超分子网络具有重要意义。

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