Department of Applied Physics, Aalto University School of Science and Technology, 02150 Espoo, Finland.
J Am Chem Soc. 2010 Aug 11;132(31):10882-90. doi: 10.1021/ja103754d.
We report on the solid-state structural features of self-assembled chiral supramolecules based on ionic complexation of chiral cholesteric pendant groups with achiral dendritic macromolecules and show that their optical activity exhibits a systematic change in the ultraviolet/visible light (UV-vis) absorption and enhancement in the circular dichroism (CD) signal, indicating the occurrence of supramolecular chirality, also referred to as induced circular dichroism (ICD). We construct a homologous series of complexes by varying systematically from 1 to 3 the generation of dendritic units contained in dendrons, dendrimers, and dendronized polymers. The structural properties of the complexes are investigated by means of small-angle X-ray scattering (SAXS) and transmission electron microscopy (TEM). Depending on the class of dendritic molecule and the generation, lamellar, columnar hexagonal, oblique columnar, and rectangular columnar phases can be found, with a direct correlation among the degrees of freedom of the dendritic macromolecules used and the level of order achieved in the self-assembled solid-state structures. The enhancement of the optical signals of these mesoscopic structures appears to be correlated with their order in the solid state. Complexes with the longest lattice correlation lengths also show the most enhanced CD signals. These results show the unique versatility of dendritic macromolecules as supramolecular templates capable of organizing low molecular weight chiral pendant units into a variety of solid-state structures with amplified optical properties.
我们报告了基于手性胆甾型侧基与非手性树枝状大分子离子络合的自组装手性超分子的固态结构特征,并表明其光学活性在紫外/可见(UV-vis)吸收中表现出系统变化,并在圆二色性(CD)信号中增强,表明超分子手性的发生,也称为诱导圆二色性(ICD)。我们通过从树枝状大分子、树枝状聚合物和树枝状化聚合物中包含的树枝单元的代际系统地变化 1 到 3,构建了一系列同系物复合物。通过小角 X 射线散射(SAXS)和透射电子显微镜(TEM)研究了复合物的结构特性。根据树枝状分子的类别和代际,可以找到层状、柱状六方、斜柱状和矩形柱状相,所使用的树枝状大分子的自由度与自组装固态结构中达到的有序程度之间存在直接相关性。这些介观结构的光学信号增强似乎与其在固态中的有序性相关。具有最长晶格相关长度的配合物也表现出最增强的 CD 信号。这些结果表明,树枝状大分子作为超分子模板具有独特的多功能性,能够将低分子量手性侧基单元组织成具有放大光学性质的各种固态结构。