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首页> 外文期刊>Journal of the American Chemical Society >Just Add Water: Modulating the Structure-Derived Acidity of Catalytic Hexameric Resorcinarene Capsules
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Just Add Water: Modulating the Structure-Derived Acidity of Catalytic Hexameric Resorcinarene Capsules

机译:只需添加水:调节催化六聚体间苯二酚胶囊的结构衍生的酸度

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摘要

The hexameric undecyl-resorcin[4]arene capsule (~(C11)R_6) features eight discrete structural water molecules located at the vertices of its cubic suprastructure. Combining NMR spectroscopy with classical molecular dynamics (MD), we identified and characterized two distinct species of this capsule, ~(C11)R_6-A and ~(C11)R_6-B, respectively featuring 8 and 15 water molecules incorporated into their respective hydrogen-bonded networks. Furthermore, we found that the ratio of the ~(C11)R_6-A and ~(C11)R_6-B found in solution can be modulated by controlling the water content of the sample. The importance of this supra-molecular modulation in ~(C11)R_6 capsules is highlighted by its ability to perform acid-catalyzed transformations, which is an emergent property arising from the hydrogen bonding within the suprastructure. We show that the conversion of ~(C11)R_6-A to ~(C11)R_6-B enhances the catalytic rate of a model Diels-Alder cyclization by 10-fold, demonstrating the cofactor-derived control of a supramolecular catalytic process that emulates natural enzymatic systems.
机译:六偏见的未甲基 - 间粘蛋白[4]芳烃胶囊(〜(C11)R_6)具有位于其立方超法的顶点的八个离散结构水分子。将NMR光谱与经典分子动力学(MD)组合,我们鉴定并表征了这种胶囊的两个不同物种,〜(C11)R_6-A和〜(C11)R_6-B分别具有8和15个水分子,其掺入它们各自的氢气中 - 禁止网络。此外,我们发现,通过控制样品的水含量,可以调节溶液中发现的〜(C11)R_6-A和〜(C11)R_6-B的比率。通过其进行酸性催化转化的能力突出了该Supra分子调制在〜(C11)R_6胶囊中的重要性,这是在上述性的氢键中产生的出良的性质。我们表明,〜(C11)R_6-A至〜(C11)R_6-B的转化增强了模型Diels-Alder环化的催化速率10倍,证明了模拟的超分子催化过程的辅因子衍生的控制天然酶系统。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第40期|16419-16427|共9页
  • 作者单位

    Homogeneous Supramolecular and Bioinspired Catalysis Group van't Hojf Institute for Molecular Science (HIMS) University of Amsterdam (UvA) 1098 XH Amsterdam The Netherlands;

    Homogeneous Supramolecular and Bioinspired Catalysis Group van't Hoff Institute for Molecular Science (HIMS) University of Amsterdam (UvA) 1098 XH Amsterdam The Netherlands;

    Homogeneous Supramolecular and Bioinspired Catalysis Group van't Hoff Institute for Molecular Science (HIMS) University of Amsterdam (UvA) 1098 XH Amsterdam The Netherlands;

  • 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);
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  • 正文语种 eng
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