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Biased Symmetry Breaking and Chiral Control by Self-Replicating in Achiral Tetradentate Platinum (II) Complexes

机译:通过在脑筋急转弯铂(II)复合物中自重复制偏置对称性和手性控制

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Obtaining homochirality from biased symmetry-breaking of self-assembly in achiral molecules remains a great challenge due to the lack of ingenious strategies and controlling their handedness. Here, we report the first case of biased symmetry breaking from achiral platinum (II) liquid crystals which self-organize into an enantiomerically enriched single domain without selection of handedness in twist grain boundary TGB ([)*(]) phase. Most importantly, the chiral control of self-organization can be achieved by using above the homochiral liquid crystal films with determined handedness (P or M) as a template. Moreover, benefiting from self-assembled superhelix, these complexes exhibit prominent circularly polarized luminescence with high |g(lum)| up to 3.4x10(-3) in the TGB ([)*(]) mesophase. This work paves a neoteric avenue for the development of chiral self-assemblies from achiral molecules.
机译:由于缺乏巧妙的策略和控制他们的惯用手,从非手性分子自组装的有偏对称破缺中获得同手性仍然是一个巨大的挑战。在这里,我们报道了非手性铂(II)液晶的第一个偏对称性破缺案例,在扭曲晶界TGB([)*(])相中,非手性铂(II)液晶自组织成一个对映体富集的单畴,而无需选择手性。最重要的是,通过使用上述具有确定手性(P或M)的同手性液晶膜作为模板,可以实现对自组织的手性控制。此外,得益于自组装超ELIX,这些配合物在TGB([)*(])中间相表现出高| g(lum)|至3.4x10(-3)的显著圆极化发光。这项工作为非手性分子手性自组装的发展开辟了一条近代道路。

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