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首页> 外文期刊>Bulletin of the Chemical Society of Japan >Synthetic Methodologies for Structurally Defined Linked-[n] Rotaxanes with Permethylated Cyclodextrins: Platform for Functionalized Molecular Electronics
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Synthetic Methodologies for Structurally Defined Linked-[n] Rotaxanes with Permethylated Cyclodextrins: Platform for Functionalized Molecular Electronics

机译:用渗透吡啶化环糊精的结构定义的连接 - [N]旋司的合成方法:官能化分子电子的平台

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摘要

Insulated molecular wires, p-conjugated molecules insulated by nonconductive macrocycles, have been regarded as key components in the field of single-molecule electronics. Their various functionalities were attributed to their p-conjugated systems and enhanced by their macrocyclic insulation. We have recently proposed that the linked-structures resulting from pi-conjugation with cyclic molecules, especially with permethy-lated cyclodextrins, were effective for preparing various types of functionalized insulated molecular wires for use in molecular electronics. The unique self-threading supramolecules called linked-[n]rotaxanes, are reported to have the enhanced functional properties of molecular wires. The development of such insulated molecular wires has been strongly supported by precise engineering protocols with fine synthetic techniques for making self-threading supramolecular structures. In this account, we systematically describe and categorize synthetic procedures for making structurally defined linked-[n]rotaxanes via various reaction systems with focus on the threading and fixation systems peculiar to linked-[n]rotaxane structures.
机译:绝缘分子线,由非导电宏键集绝缘的P缀合分子被认为是单分子电子领域的关键组分。它们的各种功能归因于它们的P缀合系统,并通过宏环绝缘增强。最近提出,由循环分子的PI-缀合引起的连接结构,特别是具有渗透性环糊精,用于制备用于分子电子的各种官能化绝缘分子线的各种官能化绝缘分子线。据报道,称为链接 - [n]旋刀的独特自动穿线超分子具有增强的分子线的功能性。通过精确的工程方案具有精细的合成技术,强烈支持这种绝缘分子线的开发,用于制造自动穿线超分子结构。在该帐户中,我们通过各种反应系统系统地描述和分类了用于通过各种反应系统制作结构上限定的链接 - [N]轮烷基烷基因,其专注于连接的螺纹和固甲烷结构特有的螺纹和固定系统。

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