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Chiral metal–macrocycle frameworks: supramolecular chirality induction and helicity inversion of the helical macrocyclic structures

机译:手性金属-大环骨架:螺旋大环结构的超分子手性诱导和螺旋反转

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Porous molecular solids composed of discrete macrocycles/cages have great potential for catalysis, separation and sensing techniques. Dynamic structural transformation of the host building blocks, especially a helicity inversion responsive to chemical triggers, is central to upgrading the spatial functions. Here we have achieved the syntheses of homochiral porous molecular solids composed of helical metal macrocycles through supramolecular chirality induction to both enantiomorphic forms with the aid of two different enantiopure sugar-derived lactones in the crystallization process. Moreover, we found that the helicity of the macrocyclic skeletons can be inverted in the crystalline state only by changing the type of solvent. This finding would lead to dynamic control of space chirality in connection with optical resolution, chiral amplification and asymmetric reactions.
机译:由离散的大环/笼组成的多孔分子固体具有巨大的催化,分离和传感技术潜力。主体构件的动态结构转换,尤其是响应化学触发的螺旋度反转,对于升级空间功能至关重要。在这里,我们通过在结晶过程中借助两种不同的对映纯糖衍生的内酯,通过超分子手性诱导为两种对映体形式,实现了由螺旋金属大环组成的同手性多孔分子固体的合成。此外,我们发现,仅通过改变溶剂的类型,大环骨架的螺旋性就可以在结晶状态下反转。这一发现将导致与光学分辨率,手性放大和不对称反应有关的空间手性的动态控制。

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