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Conformational and supramolecular properties of main chain and cyclic click oligotriazoles and polytriazoles

机译:主链和环状点击低聚三唑和聚三唑的构象和超分子性质

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摘要

This Feature Article gives a summary on the conformational and supramolecular properties of a special type of click molecules, namely, main chain and cyclic oligo- and polytriazoles. The triazole ring is an interesting structural motif since it is a hydrogen bond donor and acceptor, a large molecular dipole and also a metal ligand. It can interact with a wide variety of functionalities, e.g. hydrogen bonding partners (e.g. amides or anions), molecular dipoles, and metal ions to generate many fascinating conformational features such as pseudo rod-like, U-turn, helical, double helical structures, SS-strands and SS-sheets. Oligo- and polytriazoles can also exhibit interesting supramolecular attributes such as host-guest complexation, self assembly, chemosensing and gelating properties. It is believed that many new and unique conformational and supramolecular properties can be created by incorporating the correct type of functional group partners into the oligo- and polytriazole backbone. This type of research can also advance our understanding on functional properties of such triazole-rich compounds.
机译:该专题文章总结了一种特殊类型的点击分子(即主链和环状低聚三唑)的构象和超分子性质。三唑环是有趣的结构基序,因为它是氢键供体和受体,大分子偶极子以及金属配体。它可以与多种功能进行交互,例如氢键伙伴(例如酰胺或阴离子),分子偶极子和金属离子产生许多引人入胜的构象特征,例如拟棒状,掉头,螺旋,双螺旋结构,SS链和SS片。寡三唑和聚三唑也可以表现出有趣的超分子特性,例如客体-客体的络合,自组装,化学传感和胶凝特性。据信,通过将正确类型的官能团配偶体掺入到寡-和聚三唑骨架中,可以产生许多新的和独特的构象和超分子性质。这种类型的研究也可以增进我们对这类富含三唑的化合物的功能特性的了解。

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  • 来源
    《Chemical Communications》 |2010年第20期|P.3437-3453|共17页
  • 作者单位

    Department of Chemistry, The Chinese University of Hong Kong,Shatin NT, Hong Kong SAR The Center of Novel Functional Molecules, The Chinese University of Hong Kong, Shatin NT, Hong Kong SAR Institute of Molecular Functional Materials, Areas of Excellence Scheme, University Grants Committee, Hong Kong;

    rnDepartment of Chemistry, The Chinese University of Hong Kong,Shatin NT, Hong Kong SAR;

    rnDepartment of Chemistry, The Chinese University of Hong Kong,Shatin NT, Hong Kong SAR;

    rnDepartment of Chemistry, The Chinese University of Hong Kong,Shatin NT, Hong Kong SAR;

    rnThe Center of Novel Functional Molecules, The Chinese University of Hong Kong, Shatin NT, Hong Kong SAR;

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