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首页> 外文期刊>Nature Communications >Supramolecular block copolymers by kinetically controlled co-self-assembly of planar and core-twisted perylene bisimides
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Supramolecular block copolymers by kinetically controlled co-self-assembly of planar and core-twisted perylene bisimides

机译:平面和核加捻的bi双酰亚胺的动力学控制共自组装超分子嵌段共聚物

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摘要

New synthetic methodologies for the formation of block copolymers have revolutionized polymer science within the last two decades. However, the formation of supramolecular block copolymers composed of alternating sequences of larger block segments has not been realized yet. Here we show by transmission electron microscopy (TEM), 2D NMR and optical spectroscopy that two different perylene bisimide dyes bearing either a flat (A) or a twisted (B) core self-assemble in water into supramolecular block copolymers with an alternating sequence of (A(m)BB)(n). The highly defined ultralong nanowire structure of these supramolecular copolymers is entirely different from those formed upon self-assembly of the individual counterparts, that is, stiff nanorods (A) and irregular nanoworms (B), respectively. Our studies further reveal that the as-formed supramolecular block copolymer constitutes a kinetic self-assembly product that transforms into thermodynamically more stable self-sorted homopolymers upon heating.
机译:在过去的二十年中,用于形成嵌段共聚物的新合成方法已彻底改变了聚合物科学。然而,尚未实现由较大嵌段链段的交替序列组成的超分子嵌段共聚物的形成。在这里,我们通过透射电子显微镜(TEM),2D NMR和光谱学表明,带有平面(A)或扭曲(B)核的两种不同的per双酰亚胺染料在水中自组装为具有交替序列的超分子嵌段共聚物(A(m)BB)(n)。这些超分子共聚物的高度定义的超长纳米线结构与单独配对物的自组装形成的结构完全不同,分别是硬纳米棒(A)和不规则纳米蠕虫(B)。我们的研究进一步揭示,所形成的超分子嵌段共聚物构成了一种动力学自组装产物,该产物在加热时转变为热力学上更稳定的自选均聚物。

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