Department of Chemistry and Biochemistry, Old Dominion University, Norfolk, Virginia 23529, United States.
J Org Chem. 2020 Dec 18;85(24):16136-16156. doi: 10.1021/acs.joc.0c01978. Epub 2020 Dec 10.
Glycoclusters with three, four, and six arms of glycosyl triazoles were designed, synthesized, and characterized. The self-assembling properties of these molecules and their catalytic activity as ligands in copper-catalyzed azide and alkyne cycloaddition (CuAAC) reactions were studied. The compounds with a lower number of branches exhibit excellent gelation properties and can function as supramolecular gelators. The resulting gels were characterized using optical microcopy and atomic force microscopy. The glycoconjugates containing six branches showed significant catalytic activity for copper sulfate mediated cycloaddition reactions. In aqueous solutions, 1 mol % of glycoclusters to substrates was efficient at accelerating these reactions. Several trimeric compounds were found to be capable of forming co-gels with the catalytically active hexameric compounds. Using the organogels formed by the glycoconjugates as supramolecular catalysts, efficient catalysis was demonstrated for several CuAAC reactions. The metallogels with CuSO were also prepared as gel columns, which can be reused for the cycloaddition reactions several times. These include the preparation of a few glycosyl triazoles and aryl triazoles and isoxazoles. We expect that these sugar-based soft biomaterials will have applications beyond supramolecular catalysis for copper-catalyzed cycloaddition reactions. They may also be useful as ligands or gel matrixes for other metal-ion catalyzed organic reactions.
设计、合成并表征了具有三个、四个和六个糖基三唑臂的糖基簇。研究了这些分子的自组装性质及其作为铜催化叠氮化物和炔烃环加成(CuAAC)反应配体的催化活性。支化程度较低的化合物具有优异的凝胶性能,可用作超分子凝胶剂。使用光学显微镜和原子力显微镜对所得凝胶进行了表征。含有六个支链的糖缀合物对硫酸铜介导的环加成反应表现出显著的催化活性。在水溶液中,1 mol%的糖缀合物对底物可有效地加速这些反应。发现几种三聚体化合物能够与催化活性的六聚体化合物形成共凝胶。使用糖缀合物形成的有机凝胶作为超分子催化剂,对几种 CuAAC 反应进行了有效的催化。还制备了含有 CuSO 的金属凝胶作为凝胶柱,可用于多次重复的环加成反应。这包括一些糖基三唑和芳基三唑和异恶唑的制备。我们预计这些基于糖的软生物材料将在铜催化环加成反应的超分子催化之外具有应用。它们也可能作为其他金属离子催化的有机反应的配体或凝胶基质有用。