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基于寡脲的阴离子配位驱动的单双螺旋切换和手性光学分子切换

Anion-coordination-driven single-double helix switching and chiroptical molecular switching based on oligoureas.

作者信息

Li Hongfei, Kou Lei, Liang Lin, Li Boyang, Zhao Wei, Yang Xiao-Juan, Wu Biao

机构信息

Key Laboratory of Synthetic and Natural Functional Molecule Chemistry of the Ministry of Education, College of Chemistry and Materials Science, Northwest University Xi'an 710069 China.

Key Laboratory of Medical Molecule Science and Pharmaceutics Engineering, Ministry of Industry and Information Technology, School of Chemistry and Chemical Engineering, Beijing Institute of Technology Beijing 102488 China

出版信息

Chem Sci. 2022 Apr 7;13(17):4915-4921. doi: 10.1039/d2sc00876a. eCollection 2022 May 4.

Abstract

Synthetic foldamers with helical conformation are widely seen, but controllable interconversion amongst different geometries (helical structure and sense) is challenging. Here, a family of oligourea (tetra-, penta-, and hexa-) ligands bearing stereocenters at both ends are designed and shown to switch between single and double helices with concomitant inversion of helical senses upon anion coordination. The tetraurea ligand forms a right-handed single helix upon chloride anion (Cl) binding and is converted into a left-handed double helix when phosphate anion (PO ) is coordinated. The helical senses of the single and double helices are opposite, and the conversion is further found to be dependent on the stoichiometry of the ligand and phosphate anion. In contrast, only a single helix is formed for the hexaurea ligand with the phosphate anion. This distinction is attributed to the fact that the characteristic phosphate anion coordination geometry is satisfied by six urea moieties with twelve H-bonds. Our study revealed unusual single-double helix interconversion accompanied by unexpected chiroptical switching of helical senses.

摘要

具有螺旋构象的合成折叠体广泛存在,但在不同几何形状(螺旋结构和螺旋方向)之间进行可控的相互转换具有挑战性。在此,设计了一类在两端都带有立体中心的低聚脲(四聚、五聚和六聚)配体,结果表明,在阴离子配位时,它们能在单螺旋和双螺旋之间切换,同时螺旋方向发生反转。四聚脲配体在与氯离子(Cl⁻)结合时形成右手单螺旋,而当与磷酸根阴离子(PO₄³⁻)配位时则转变为左手双螺旋。单螺旋和双螺旋的螺旋方向相反,并且进一步发现这种转换取决于配体与磷酸根阴离子的化学计量比。相比之下,六聚脲配体与磷酸根阴离子结合时只形成单螺旋。这种差异归因于六个脲基团通过十二个氢键满足了磷酸根阴离子的特征配位几何结构。我们的研究揭示了不寻常的单 - 双螺旋相互转换以及伴随的螺旋方向意外的手性光开关现象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2aac/9067589/f29baed70d65/d2sc00876a-f1.jpg

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