首页> 外文期刊>The Journal of Organic Chemistry >Formation of supramolecular polymers and discrete dimers of perylene bisimide dyes based on melamine-cyanurates hydrogen-bonding interactions
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Formation of supramolecular polymers and discrete dimers of perylene bisimide dyes based on melamine-cyanurates hydrogen-bonding interactions

机译:基于三聚氰胺-氰尿酸酯氢键相互作用的per双酰亚胺染料超分子聚合物和离散二聚体的形成

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Melamine-linked perylene bisimide dyes (MPBIs) bearing an ethylene or trimethylene group as linker moieties were synthesized, and their self-aggregation and coaggregation with cyanurates through complementary triple hydrogen bonds have been investigated. UV/vis studies revealed that both the MPBIs self-assemble in nonpolar organic solvent through pi-pi stacking interaction between perylene cores, giving self-aggregates with nearly identical thermal stabilities. Upon addition of 1 equiv of cyanurate components, however, the stabilities of the resulting aggregates were dramatically changed between the two systems, suggesting the formation of different types of hydrogen-bonded supramolecular species. Dynamic light scattering and atomic force microscopic studies revealed that the system featuring ethylene linker moieties generates a discrete dimer of MPBI supported by two cyanurate molecules, whereas the system featuring trimethylene linker moieties affords extended supramolecular polymers hierarchically organizing into nanoscopic fibers. These results demonstrate that it is possible to obtain distinct supramolecular species by just changing the number of carbon atoms at the linker moieties of MPBI components. The present strategy for the fabrication of discrete or polymeric supramolecular assemblies should be applicable to other functional;pi-conjugated molecules.
机译:合成了带有亚乙基或三亚甲基作为连接基的三聚氰胺连接的bi双酰亚胺染料(MPBI),并研究了它们通过互补的三氢键与氰尿酸酯的自聚集和共聚集。紫外/可见光研究表明,两种MPBI通过core核之间的pi-pi堆积相互作用在非极性有机溶剂中自组装,从而获得具有几乎相同的热稳定性的自聚集体。然而,当加入1当量的氰尿酸酯组分时,所得的聚集体的稳定性在两个系统之间显着改变,表明形成了不同类型的氢键合的超分子物质。动态光散射和原子力显微镜研究表明,具有乙烯连接基的系统生成了由两个氰尿酸酯分子支持的MPBI离散二聚体,而具有三亚甲基连接基的系统则提供了扩展的超分子聚合物,可分级组织为纳米纤维。这些结果表明,仅改变MPBI组分的连接基团上的碳原子数,就有可能获得独特的超分子物种。用于制造离散的或聚合的超分子组装体的本策略应适用于其他功能性π共轭分子。

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