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Synthesis and Self-Assembly of Chiral Cylindrical Molecular Complexes: Functional Heterogeneous Liquid-Solid Materials Formed by Helicene Oligomers

机译:手性圆柱分子配合物的合成和自组装:螺旋低聚物形成的功能性异质液体固体材料

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摘要

Chiral cylindrical molecular complexes of homo- and hetero-double-helices derived from helicene oligomers self-assemble in solution, providing functional heterogeneous liquid-solid materials. Gels and liotropic liquid crystals are formed by fibril self-assembly in solution; molecular monolayers and fibril films are formed by self-assembly on solid surfaces; gels containing gold nanoparticles emit light; silica nanoparticles aggregate and adsorb double-helices. Notable dynamics appears during self-assembly, including multistep self-assembly, solid surface catalyzed double-helix formation, sigmoidal and stairwise kinetics, molecular recognition of nanoparticles, discontinuous self-assembly, materials clocking, chiral symmetry breaking and homogeneous-heterogeneous transitions. These phenomena are derived from strong intercomplex interactions of chiral cylindrical molecular complexes.
机译:衍生自螺旋烯低聚物的均双螺旋和杂双螺旋的手性圆柱分子复合物在溶液中自组装,从而提供功能多样的液固材料。凝胶和易溶液晶是通过原纤维在溶液中的自组装形成的。分子单层和原纤维膜是通过自组装在固体表面上形成的。含有金纳米颗粒的凝胶发光;二氧化硅纳米粒子聚集并吸附双螺旋。自组装过程中出现了明显的动力学,包括多步自组装,固体表面催化的双螺旋形成,S形和阶梯形动力学,纳米颗粒的分子识别,不连续的自组装,材料计时,手性对称性断裂和均相-非均相转变。这些现象源于手性圆柱分子复合物之间强烈的复合物相互作用。

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