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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Toward Molecular Nanowires Self-Assembled on an Insulating Substrate: Heptahelicene-2-carboxylic acid on Calcite (1014)
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Toward Molecular Nanowires Self-Assembled on an Insulating Substrate: Heptahelicene-2-carboxylic acid on Calcite (1014)

机译:自组装在绝缘基底上的分子纳米线:方解石上的庚二烯-2-羧酸(1014)

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摘要

Molecular self-assembly is employed for creating unidirectional molecular nanostructures on a truly insulating substrate, namely the (1014) cleavage plane of calcite. The molecule used is racemic heptahelicene-2-carboxylic acid, which forms structures, well-aligned along the [010] crystallographic direction and stable at room temperature. Precise control of both molecule-substrate and molecule-molecule interaction is required, leading to the formation of such wire-like structures of well-defined width and lengths exceeding 100 nm. This subtle balance is governed by the heptahelicene-2-carboxylic acid used in this study, allowing for both hydrogen bond formation as well as π-π stacking.
机译:分子自组装用于在真正绝缘的基质(即方解石的(1014)裂解面)上创建单向分子纳米结构。所使用的分子是外消旋庚二烯-2-羧酸,其形成结构,沿[010]晶体学方向排列良好,并在室温下稳定。需要精确控制分子-底物和分子-分子之间的相互作用,从而导致形成这样的线状结构,其明确定义的宽度和长度超过100nm。这种微妙的平衡是由这项研究中使用的庚二烯-2-羧酸控制的,既允许氢键形成,又可以π-π堆积。

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