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Functionalised tetrathiafulvalene- (TTF-) macrocycles: recent trends in applied supramolecular chemistry

机译:功能化TetrathiafulValene-(TTF-)宏型:近期应用超分子化学的趋势

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摘要

Tetrathiafulvalene (TTF) has been extensively explored as a p-electron donor in supramolecular systems. Over the last two decades substantial advances have been made in terms of constructing elaborate architectures based on TTF and in exploiting the resulting systems in the context of supramolecular host-guest recognition. The inherent electron-donating character of TTF derivatives has led to their use in the construction of highly efficient optoelectronic materials, optical sensors, and electron-transfer ensembles. TTFs are also promising candidates for the development of the so-called "functional materials'' that might see use in a range of modern technological applications. Novel synthetic strategies, coupled with the versatility inherent within the TTF moiety, are now allowing the architecture of TTF-based systems to be tuned precisely and modified for use in specific purposes. In this critical review, we provide a "state-of-the-art'' overview of research involving TTF-based macrocyclic systems with a focus on their use in supramolecular host-guest recognition, as components in non-covalent electron transfer systems, and in the construction of "molecular machines''.
机译:TetrathiafulValene(TTF)已被广泛探索作为超分子系统的P-Electron供体。在过去的二十年里,根据TTF构建精美架构以及利用所产生的系统在超分子宿主认可的背景下,已经取得了实质性进展。 TTF衍生物的固有的电子捐赠性能导致它们在高效的光电材料,光学传感器和电子传输集合的构造中使用。 TTFS也是开发所谓的“功能材料”的候选人,这些候选人可能会在一系列现代技术应用中使用。新的合成策略与TTF部分内固有的多功能性,现在允许架构基于TTF的系统被精确调整并修改以便以特定目的使用。在这一批判性审查中,我们提供了“最先进的”的研究概述,涉及基于TTF的宏观系统的研究,重点是他们的使用超分子宿主客观识别,作为非共价电子转移系统的组件,以及在“分子机器”的构建中。

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  • 来源
    《Chemical Society Reviews 》 |2018年第15期| 共32页
  • 作者单位

    Shanghai Univ Inst Supramol Chem &

    Catalysis Shanghai 200444 Peoples R China;

    Univ Southern Denmark Dept Phys Chem &

    Pharm Campusvej 55 DK-5230 Odense M Denmark;

    Kyushu Univ Grad Sch Engn Dept Chem &

    Biochem Fukuoka Fukuoka 8190395 Japan;

    Univ Angers CNRS UMR 6200 Lab MOLTECH Anjou 2 Bd Lavoisier F-49045 Angers France;

    Univ Angers CNRS UMR 6200 Lab MOLTECH Anjou 2 Bd Lavoisier F-49045 Angers France;

    Univ Angers CNRS UMR 6200 Lab MOLTECH Anjou 2 Bd Lavoisier F-49045 Angers France;

    Univ Southern Denmark Dept Phys Chem &

    Pharm Campusvej 55 DK-5230 Odense M Denmark;

    Shanghai Univ Inst Supramol Chem &

    Catalysis Shanghai 200444 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学 ;
  • 关键词

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