A trefoil knot self-templated through imination in water

Author:

Lei Ye,Li Zhaoyong,Wu Guangcheng,Zhang Lijie,Tong Lu,Tong Tianyi,Chen Qiong,Wang LingxiangORCID,Ge Chenqi,Wei Yuxi,Pan Yuanjiang,Sue Andrew C.-H.ORCID,Wang LinjunORCID,Huang FeiheORCID,Li HaoORCID

Abstract

AbstractThe preparation of topologically nontrivial molecules is often assisted by covalent, supramolecular or coordinative templates that provide spatial pre-organization for all components. Herein, we report a trefoil knot that can be self-assembled efficiently in water without involving additional templates. The direct condensation of three equivalents of a tetraformyl precursor and six equivalents of a chiral diamine produces successfully a [3 + 6] trefoil knot whose intrinsic handedness is dictated by the stereochemical configuration of the diamine linkers. Contrary to the conventional wisdom that imine condensation is not amenable to use in water, the multivalent cooperativity between all the imine bonds within the framework makes this trefoil knot robust in the aqueous environment. Furthermore, the presence of water is proven to be essential for the trefoil knot formation. A topologically trivial macrocycle composed of two tetraformyl and four diamino building blocks is obtained when a similar reaction is performed in organic media, indicating that hydrophobic effect is a major driving force behind the scene.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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