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The First Quantitative Synthesis of a Closed Three-Link Chain (6_1~3) Using Coordination and Noncovalent Interactions-Driven Self-Assembly

机译:使用配位和非共价相互作用驱动的自组装的第一定量合成封闭的三连锁链(6_1〜3)

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摘要

Engineering of supramolecular topologies offers potential opportunities for tailoring their properties to various function and applications. However, the synthesis of interlocked or intertwined compounds, catenanes, links or knots, is a challenge. Previously, we used coordination-driven self-assembly and noncovalent interactions (NCIs) between metal-based acceptors and multipyridyl donors to create supramolecular topologies with increasing complexity. Self-assembling components of fixed length and geometry have been utilized for the production of topologies such as Borromean rings, Solomon links, Hopf s link, "rectangle in rectangle", and an 8_(18) molecular knot. However, recent synthesis of a linear [3]catenane by us witnessed the importance of flexible ligands along with coordination-driven self-assembly and NCIs in self-assembling units. This flexibility provides distinctive angularity for the recognition of various NCIs and thus offers tremendous possibilities for realizing complex supramolecular topologies. This study proposed a selective and quantitative synthesis, and also the first X-ray characterization of a closed three-link chain (a prime link of [3]catenane with 6 crossings) via two component coordination-driven self-assembly. The experiments based upon concentration, guest template, and solvent effects were systematically presented. Furthermore, the experimental finding was supported by density functional theory calculations, which highlighted the necessity of the multiple NCIs along with appropriate geometry of the [2 + 2] rings.
机译:超分子拓扑的工程提供了潜在的机会,用于根据各种功能和应用来定制其性质。然而,合成互锁或交织的化合物,即链烷,链接或结是挑战。以前,我们使用了金属基受体和多赖吡啶供体之间的协调驱动的自组装和非共价相互作用(NCIS)以产生超分子拓扑,随着复杂性的增加。已经利用固定长度和几何形状的自组装成分用于生产诸如Borromean环,所罗门链路,Hopf S链路,“矩形矩形”的拓扑,以及8_(18)分子结。然而,美国最近合成的线性[3] catenane通过在自组装单元中目睹了柔性配体以及协调驱动的自组装和NCI的重要性。这种灵活性为识别各种NCI提供了独特的角度,因此为实现复杂的超分子拓扑提供了巨大的可能性。该研究提出了一种选择性和定量的合成,以及通过两个组分配位驱动的自组装的封闭的三连杆(具有6个交叉键的末端的封闭三连杆链(具有6个过分的序列的X射线特征。系统地呈现了基于浓度,客销模板和溶剂效应的实验。此外,通过密度泛函理论计算支持实验发现,这突出了多个NCI的必要性以及[2 + 2]环的适当几何形状。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第20期|9327-9336|共10页
  • 作者单位

    Department of Chemistry University of Ulsan Ulsan 44776 Republic of Korea Energy Materials Laboratory Korea Institute of Energy Research Daejeon 34129 Republic of Korea;

    Department of Chemistry University of Ulsan Ulsan 44776 Republic of Korea;

    Center for Research Equipments Korea Basic Science Institute Ochang Chungbuk 28119 Republic of Korea;

    Department of Chemistry University of Ulsan Ulsan 44776 Republic of Korea;

    Energy Materials Laboratory Korea Institute of Energy Research Daejeon 34129 Republic of Korea;

    Department of Chemistry University of Ulsan Ulsan 44776 Republic of Korea;

    Department of Chemistry University of Ulsan Ulsan 44776 Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:44

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