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Increasing 3D Supramolecular Order by Decreasing Molecular Order. A Comparative Study of Helical Assemblies of Dendronized Nonchlorinated and Tetrachlorinated Perylene Bisimides

机译:通过减少分子序列增加3D超分子秩序。树枝状非氯化和四氯化二萘双酰亚胺螺旋组装的比较研究

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摘要

A nonplanar, twisted, and flexible tetrachlorinated perylene bisimide (Cl4PBI) was functionalized with two AB3 minidendrons containing hydrogenated or semifluorinated dodecyl groups. The hydrogenated dendron was attached to the imide groups of Cl4PBI via m = 0, 1, and 2 methylenic units, whereas the dendron containing semifluorinated groups was attached via m = 3 or a di(ethylene oxide) linker (m = 2EO). The supramolecular structures of these compounds, determined by a combination of differential scanning calorimetry, X-ray diffraction, and solid-state NMR, were compared with those of nonchlorinated planar and rigid PBI reported previously, which demonstrated the thermodynamically controlled formation of 2D periodic arrays at high temperatures and 3D arrays at low temperatures. The molecularly less ordered Cl4PBI containing hydrogenated dendrons self-organize into exclusively 3D crystalline periodic arrays under thermodynamic control for m = 0 and 2, while the more highly molecularly ordered PBI produced less stable and ordered 3D crystals and also 2D assemblies. This induction of a higher degree of 3D order in supramolecular assemblies of the less well-ordered molecular building blocks was unanticipated. The semifluorinated dendronized Cl4PBI with m = 3 formed a 2D columnar hexagonal array under kinetic control, whereas the compound with m = 2EO formed an unusual 2D honeycomb-like hexagonal phase under thermodynamic control. These Cl4PBI compounds provide a new route to stable crystalline assemblies via thermodynamic control at lower temperatures than previously obtained with PBI, thus generating 3D order in an accessible range of temperature of interest for structural analysis and for technological applications.
机译:用两个含有氢化或半氟化十二烷基的AB3小树枝对非平面,扭曲和柔性的四氯化per双酰亚胺(Cl4PBI)进行功能化。氢化的树枝状分子通过m = 0、1和2个亚甲基单元连接到Cl4PBI的酰亚胺基团上,而含有半氟化基团的树枝状分子通过m = 3或二(环氧乙烷)连接子(m = 2EO)连接上。通过差示扫描量热法,X射线衍射和固态NMR的组合确定了这些化合物的超分子结构,并将其与先前报道的非氯化的平面和刚性PBI进行了比较,证明了2D周期阵列的热力学控制在高温下使用3D阵列。在热力学控制下,m = 0和2时,分子序较少的含Cl4PBI的氢化树枝状分子自组织成3D晶体周期性阵列,而分子序较高的PBI产生的稳定性和序度较低的3D晶体以及2D组件。难以预料的是,在分子排列较差的分子构建单元的超分子组装中会产生较高程度的3D有序。 m = 3的半氟化树枝状Cl4PBI在动力学控制下形成2D柱状六角形阵列,而m = 2EO的化合物在热力学控制下形成不寻常的2D蜂窝状六角形相。这些Cl4PBI化合物通过热力学控制在比以前用PBI更低的温度下通过热力学控制提供了稳定晶体组件的新途径,从而在感兴趣的温度范围内生成3D阶数,用于结构分析和技术应用。

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