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Controlled Hierarchical Self-Assembly of Catenated Cages

机译:被连接的笼子的受控分层自组装

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摘要

Constructing hierarchical superstructures to achieve comparable complexity and functions to proteins with four-level hierarchy is challenging, which relies on the elaboration of novel building blocks with complex structures. We present a series of catenated cages with unique structural complexity and tailorability. The rational design was realized as such: A catenane of two symmetric cages (CSC), CSC-1, with all rigid imine panels was converted to a catenane of two dissymmetric cages (CDC), CDC-1, with two exterior flexible amine panels, and CDC-5 was tailored from CDC-1 by introducing an additional methyl group on each blade to increase lateral hindrance. CDC-1s with the most irregular and flexible configuration formed supramolecular dimers, which self-organized into 3D continuous wavelike plank with a three-level hierarchy, previously undiscovered by conventional building blocks. A drastically different 3D triclinic crystalline phase with a four-level hierarchy and trigonal phase with a three-level hierarchy were constructed of distorted CSC-1s and the most symmetric CDC-5s, respectively. The wavelike plank exhibited the lowest order, and the triclinic phase had a lower order than the trigonal phase which had the highest order. It correlates with the configuration of the primary structures, namely, the most disordered shape of CDC-1, the low-order configuration of CSC-1, and the most ordered geometry of CDC-5. The catenated cages with subtle structural differences therefore provide a promising platform for the search of emerging hierarchical superstructures that might be applied to proton conductivity, ferroelectricity, and catalysis.
机译:构建分层上层建筑以实现具有四级等级的蛋白质的可比复杂性和功能是具有挑战性的,这依赖于具有复杂结构的新型建筑块的制定。我们提出了一系列具有独特结构复杂性和批准的被连接的笼子。理性设计如此实现:两个对称笼(CSC),CSC-1的萘烷,将所有刚性亚胺板转化为两种不对称笼(CDC),CDC-1的CAT键,有两个外部柔性胺板并且通过在每个刀片上引入另外的甲基来量,CDC-5从CDC-1定制,以增加横向障碍。 CDC-1S具有最不规则和柔性的构造形成的超分子二聚体,其用三级等级自组织成3D连续波状板,以前由常规构建块未被发现。具有四级等级和三级层次结构的具有四级层次结构和三级等级的三级三角形晶相分别构造出扭曲的CSC-1S和最对称的CDC-5s。波状板表现出最低的顺序,并且三级相位的阶数低于具有最高阶的三角形相位。它与主要结构的配置相关,即CDC-1最无序的形状,CSC-1的低位配置,以及CDC-5的最有序的几何形状。因此,具有微妙结构差异的被连接的笼子提供了一个有希望的平台,用于搜索可能适用于质子电导率,铁电和催化的新出现的分层上层结构。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第24期|10833-10840|共8页
  • 作者单位

    School of Chemistry and Chemical Engineering Frontiers Science Centre for Transformative Molecules Shanghai Key Laboratory of Electrical Insulation and Thermal Aging Shanghai jiao Tong University Shanghai 200240 China;

    School of Chemistry and Chemical Engineering Frontiers Science Centre for Transformative Molecules Shanghai Key Laboratory of Electrical Insulation and Thermal Aging Shanghai Jiao Tong University Shanghai 200240 China;

    Key Laboratory of Specially Functional Polymeric Materials and Related Technology (ECUST) Ministry of Education East China University of Science and Technology Shanghai 200237 China;

    Key Laboratory of Specially Functional Polymeric Materials and Related Technology (ECUST) Ministry of Education East China University of Science and Technology Shanghai 200237 China;

    School of Chemistry and Chemical Engineering Frontiers Science Centre for Transformative Molecules Shanghai Key Laboratory of Electrical Insulation and Thermal Aging Shanghai jiao Tong University Shanghai 200240 China;

    School of Chemistry and Chemical Engineering Frontiers Science Centre for Transformative Molecules Shanghai Key Laboratory of Electrical Insulation and Thermal Aging Shanghai Jiao Tong University Shanghai 200240 China;

    Key Laboratory of Specially Functional Polymeric Materials and Related Technology (ECUST) Ministry of Education East China University of Science and Technology Shanghai 200237 China;

    School of Chemistry and Chemical Engineering Frontiers Science Centre for Transformative Molecules Shanghai Key Laboratory of Electrical Insulation and Thermal Aging Shanghai Jiao Tong University Shanghai 200240 China;

  • 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 22:16:45

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