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Globally homochiral assembly of two-dimensional molecular networks triggered by co-absorbers

机译:由共吸收剂引发的二维分子网络的全局同手性组装

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Understanding the chirality induction and amplification processes, and the construction of globally homochiral surfaces, represent essential challenges in surface chirality studies. Here we report the induction of global homochirality in two-dimensional enantiomorphous networks of achiral molecules via co-assembly with chiral co-absorbers. The scanning tunnelling microscopy investigations and molecular mechanics simulations demonstrate that the point chirality of the co-absorbers transfers to organizational chirality of the assembly units via enantioselective supramolecular interactions, and is then hierarchically amplified to the global homochirality of two-dimensional networks. The global homochirality of the network assembly shows nonlinear dependence on the enantiomeric excess of chiral co-absorber in the solution phase, demonstrating, for the first time, the validation of the ‘majority rules’ for the homochirality control of achiral molecules at the liquid/solid interface. Such an induction and nonlinear chirality amplification effect promises a new approach towards two-dimensional homochirality control and may reveal important insights into asymmetric heterogeneous catalysis, chiral separation and chiral crystallization.
机译:了解手性诱导和扩增过程,以及整体同手性表面的构造,是表面手性研究的基本挑战。在这里,我们通过与手性共吸收剂的共组装,报告了非手性分子的二维对映体网络中的整体同手性的诱导。扫描隧道显微镜研究和分子力学模拟表明,共吸收体的点手性通过对映选择性超分子相互作用转移到组装单元的组织手性,然后分层放大到二维网络的整体手性。网络组件的整体同质性在溶液相中显示出对手性共吸收剂对映体过量的非线性依赖性,这首次证明了“多数规则”在液体/非手性分子的同质性控制中的有效性。坚固的界面。这种诱导和非线性手性放大作用为二维均手性控制提供了一种新方法,并且可能揭示出对不对称多相催化,手性分离和手性结晶的重要见解。

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