Department of Chemistry, 2145 Sheridan Road, Northwestern University, Evanston, Illinois 60208, United States.
School of Chemical Engineering and Technology, Sun Yat-sen University, Zhuhai 519082, China.
J Am Chem Soc. 2021 Sep 29;143(38):15688-15700. doi: 10.1021/jacs.1c06333. Epub 2021 Sep 10.
The development of synthetic receptors that recognize carbohydrates in water with high selectivity and specificity is challenging on account of their structural complexity and strong hydrophilicity. Here, we report on the design and synthesis of two pyrene-based, temple-shaped receptors for the recognition of a range of common sugars in water. These receptors rely on the use of two parallel pyrene panels, which serve as roofs and floors, capable of forming multiple [C-H···π] interactions with the axially oriented C-H bonds on glycopyranosyl rings in the carbohydrate-based substrates. In addition, eight polarized pyridinium C-H bonds, projecting from the roofs and floors of the temple receptors toward the binding cavities, form [C-H···O] hydrogen bonds, with the equatorially oriented OH groups on the sugars located inside the hydrophobic cavities. Four -xylylene pillars play a crucial role in controlling the distance between the roof and floor. These temple receptors are highly selective for the binding of glucose and its derivatives. Furthermore, they show enhanced fluorescence upon binding with glucose in water, a property which is useful for glucose-sensing in aqueous solution.
设计和合成对水相中具有高选择性和特异性的识别碳水化合物的人工合成受体极具挑战性,这是因为碳水化合物结构复杂且强亲水。在这里,我们报告了两种基于苝的、庙宇形状的受体的设计和合成,用于在水中识别一系列常见的糖。这些受体依赖于使用两个平行的苝基面板作为屋顶和地板,这些面板能够与糖基底物中糖吡喃环上轴向定向的 C-H 键形成多个 [C-H···π] 相互作用。此外,从庙宇受体的屋顶和地板上突出的八个极化吡啶 C-H 键朝向结合腔形成 [C-H···O] 氢键,与位于疏水腔内的糖上赤道取向的 OH 基团结合。四个 -二甲苯撑支柱在控制屋顶和地板之间的距离方面起着至关重要的作用。这些庙宇受体对葡萄糖及其衍生物的结合具有高度选择性。此外,它们在水中与葡萄糖结合时表现出增强的荧光,这一性质可用于在水溶液中葡萄糖传感。