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仿生大环主体对水中功能性有机分子的对映选择性识别

Enantioselective Recognition of Functional Organic Molecules in Water by Biomimetic Macrocyclic Hosts.

作者信息

Yang Xiran, Jiang Wei

机构信息

Shenzhen Grubbs Institute, Guangdong Provincial Key Laboratory of Catalysis, and Department of Chemistry, Southern University of Science and Technology (SUSTech), Xueyuan Blvd 1088, Shenzhen 518055, China.

出版信息

J Am Chem Soc. 2024 Feb 14;146(6):3900-3909. doi: 10.1021/jacs.3c11492. Epub 2024 Jan 31.

Abstract

Enantioselective recognition of functional organic molecules in water is routine in nature but remains a formidable challenge for synthetic hosts. Here, we reported two pairs of chiral naphthotubes with chiral centers located in the neighborhood of the inward-directing amide groups. These naphthotubes, with a chiral twisted cavity, show highly enantioselective recognition in water to a wide scope of organic molecules (90 chiral guests). The highest enantioselectivity of 34 was achieved with neotame. Small differences between all of the noncovalent interactions shielded in the hydrophobic cavity were revealed to be responsible for the enantioselective recognition in water, which is different from the traditional views. Moreover, these hosts can differentiate the analogues of aspartame using fluorescence spectroscopy. These chiral naphthotubes have made unprecedented achievements in enantioselective recognition, providing the basis for their applications in chiral analysis and separations.

摘要

对水中功能性有机分子的对映选择性识别在自然界中很常见,但对合成主体来说仍然是一项艰巨的挑战。在此,我们报道了两对手性萘管,其手性中心位于向内的酰胺基团附近。这些具有手性扭曲空腔的萘管在水中对多种有机分子(90种手性客体)表现出高度的对映选择性识别。使用纽甜实现了高达34的最高对映选择性。结果表明,疏水空腔中屏蔽的所有非共价相互作用之间的微小差异是水中对映选择性识别的原因,这与传统观点不同。此外,这些主体可以利用荧光光谱区分阿斯巴甜的类似物。这些手性萘管在对映选择性识别方面取得了前所未有的成就,为其在手性分析和分离中的应用提供了基础。

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