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首页> 外文期刊>European journal of inorganic chemistry >Tetrahedratic mesophases, ambidextrous chiral domains and helical superstructures produced by achiral 1,1′-disubstituted ferrocene derivatives
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Tetrahedratic mesophases, ambidextrous chiral domains and helical superstructures produced by achiral 1,1′-disubstituted ferrocene derivatives

机译:非手性1,1'-二取代二茂铁衍生物产生的四面体中间相,双手性结构域和螺旋超结构

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A series of symmetrically and asymmetrically 1,1′-disubstituted mesogenic ferrocene derivatives exhibiting nonconventional lamellar and nematic phases has been synthesized. Liquid-crystal properties of these compounds were investigated by polarizing optical microscopy (POM), thermal analysis (DSC) and X-ray scattering methods (XRD). XRD patterns and optical textures of the mesophases have a complex appearance, standing apart from the signatures of previously classified liquid crystals. The most important features of the new mesophases are their spontaneous separation into large macroscopic chiral domains of opposite handednesses, intricate helical and myelinic supramolecular structures and a few signs of possible optical biaxiality. A reasonable explanation of these findings can be drawn from the tetrahedral liquid crystal order. Free rotation of the cyclopentadiene rings in the ferrocene moiety around their normal axis makes viable bent conformations of the rod-like molecules and further stabilization of the conformational enantiomers through assembly into tetrahedral molecular associates. Thus, fundamentally new types of mesophases arise from such a molecular arrangement. In addition, a nontrivial case of mixed packing of bent and nonbent molecules into columnar mesophases was detected in one of the symmetrically substituted ferrocene derivatives. Basic relationships between mesomorphic properties, supramolecular organization and chemical structures of the ferrocenomesogens have been outlined.
机译:合成了一系列显示非常规层状和向列相的对称和不对称的1,1'-双取代的介晶二茂铁衍生物。通过偏振光学显微镜(POM),热分析(DSC)和X射线散射法(XRD)研究了这些化合物的液晶性质。中间相的XRD图案和光学纹理具有复杂的外观,与先前分类的液晶的特征区分开。新的中间相的最重要特征是它们自发地分离为相反的惯性,较大的螺旋形和髓鞘超分子结构以及可能的光学双轴性的一些征兆。这些发现的合理解释可以从四面体液晶顺序中得出。二茂铁部分中的环戊二烯环绕其法线轴自由旋转使杆状分子具有可行性的弯曲构象,并通过组装成四面体分子缔合体进一步构象对映体稳定。因此,这种分子排列从根本上产生了新型的中间相。另外,在对称取代的二茂铁衍生物之一中检测到弯曲和非弯曲分子混合填充到柱状中间相中的重要案例。概述了铁茂铁基因的介晶性质,超分子组织和化学结构之间的基本关系。

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