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长苝二酰亚胺聚合物纤维的合成与表征:从体相到单分子水平

Synthesis and characterization of long perylenediimide polymer fibers: from bulk to the single-molecule level.

作者信息

De Witte Pieter A J, Hernando Jordi, Neuteboom Edda E, van Dijk Erik M H P, Meskers Stefan C J, Janssen René A J, van Hulst Niek F, Nolte Roeland J M, García-Parajó Maria F, Rowan Alan E

机构信息

Institute for Molecules and Materials, Toernooiveld 1, 6525 ED Nijmegen, The Netherlands.

出版信息

J Phys Chem B. 2006 Apr 20;110(15):7803-12. doi: 10.1021/jp057009d.

Abstract

The synthesis and characterization of perylenediimide polyisocyanides is reported. In addition to short oligomers, our synthetic approach results in the formation of extremely long, well-defined, and rigid perylenediimide polymers. Ordering and close-packing of the chromophores in these long polymers is guaranteed by attachment to a polyisocyanide backbone with amino acid side chains. Hydrogen bonding interactions between those groups stabilize and rigidify the helical polymer structure. The rodlike nature of the synthesized long perylenediimide pendant polyisocyanides as well as the helical arrangement of the chromophores is demonstrated by means of atomic force microscopy. Remarkably, polymer fibers up to 1 mum in length have been visualized, containing several thousands of perylenediimide molecules. Circular dichroism spectroscopy reveals the chiral organization of the chromophore units in the polymer, whereas absorption and emission measurements prove the occurrence of excited-state interactions between those moieties due to the close packing of the chromophore groups. However, an intricate optical behavior is encountered in bulk as a result of the coexistence of short oligomers and long polymers of perylenediimide, a situation subsequently uncovered by means of single-molecule experiments. Individual long helical perylenediimide polyisocyanides exhibit a typical red-shifted fluorescence spectrum, which, together with depolarized emission continuously decreasing in time, demonstrate that fluorescence arises from multiple excimer-like species in the polymer. Upon continuous irradiation of these long polymers, a fast decay in fluorescence lifetime is observed, a situation explained by photoinduced creation of quenching sites. Radical/ion formation by intramolecular electron transfer between close-by perylenediimide moieties is the most probable mechanism for this process. Appropriate control of the electron-transfer process might open the possibility of applying these polymers as perylenediimide-based supramolecular nanowires.

摘要

报道了苝二酰亚胺聚异氰酸酯的合成与表征。除了短链低聚物外,我们的合成方法还能形成极长、结构明确且刚性的苝二酰亚胺聚合物。这些长聚合物中发色团的有序排列和紧密堆积是通过连接到带有氨基酸侧链的聚异氰酸酯主链来保证的。这些基团之间的氢键相互作用稳定并强化了螺旋聚合物结构。通过原子力显微镜证实了合成的长苝二酰亚胺侧基聚异氰酸酯的棒状性质以及发色团的螺旋排列。值得注意的是,已经观察到长度达1微米的聚合物纤维,其中包含数千个苝二酰亚胺分子。圆二色光谱揭示了聚合物中发色团单元的手性组织,而吸收和发射测量证明了由于发色团基团的紧密堆积,这些部分之间存在激发态相互作用。然而,由于苝二酰亚胺的短链低聚物和长聚合物共存,在本体中会遇到复杂的光学行为,这种情况随后通过单分子实验得以揭示。单个长螺旋苝二酰亚胺聚异氰酸酯表现出典型的红移荧光光谱,其与随时间持续降低的去偏振发射一起,表明荧光来自聚合物中的多种类激基缔合物。对这些长聚合物进行连续照射时,观察到荧光寿命快速衰减,这种情况可通过光诱导产生猝灭位点来解释。相邻苝二酰亚胺部分之间通过分子内电子转移形成自由基/离子是该过程最可能的机制。对电子转移过程进行适当控制可能为将这些聚合物用作基于苝二酰亚胺的超分子纳米线开辟可能性。

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