首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Solvent-induced self-assembly of hydrogen bonded P4VP-perylenebisimide comb polymer
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Solvent-induced self-assembly of hydrogen bonded P4VP-perylenebisimide comb polymer

机译:氢键结合的P4VP-per二酰亚胺梳型聚合物的溶剂诱导自组装

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Polymeric supramolecular assemblies were formed when an unsymmetric perylenebisimide substituted with ethylhexyl chains on one end and functionalized with 3-pentadecylphenol at the other termini (PDP-UPBI) was complexed with poly(4-vinylpyridine) (P4VP) via hydrogen-bonding interaction. The self-assembly behavior of this polymeric supramolecule poly(4-vinylpyridine)-perylenebisimide P4VP(PDP-UPBI)_(1.0) was studied in solvents of varying polarity like chloroform (CHCI3) and methylcydohexane (MCH). Variable concentration and variable temperature proton NMR studies in CDCI3 and deuterated 1,1,2,2-tetrachloroethane (TCE), respectively, revealed the polymeric nature of the perylenebisimide upon complexation and the high thermal stability of the self organized structures in solution. The improved solubility afforded by the complexation enabled variable temperature UV-Vis absorption studies in the non-polar solvent MCH, which indicated the existence of strong face-to-face stacked H-type aggregates. The strong fluorescence quenching in MCH also supported the identification of the nature of aggregates as co-facial H-type. Although the existence of aggregates was not very evident in dilute solutions of chloroform, the fluorescence of the P4VP(PDP-UPBI)_(1.0) was quenched compared to that of PDP-UPBI. Thin spin coated films of the complex from chloroform exhibited features of rotationally displaced H-type aggregates characterized by blue shift of absorption maxima and the appearance of a new red shifted peak at 540 nm with weak aggregate emission beyond 600 nm. Morphology analysis of drop cast samples using scanning electron microscopy (SEM) and transmission electron microscopy (TEM) revealed the formation of micrometer long multilamellar nanofibers from CHCI3 and two dimensional multilamellar nanosheets upon switching the solvent to MCH.
机译:当一端被乙基己基链取代并在另一端被3-十五烷基苯酚(PDP-UPBI)官能化的不对称per二酰亚胺通过氢键相互作用与聚(4-乙烯基吡啶)(P4VP)络合时,形成了聚合物超分子组装体。研究了这种聚合物超分子聚(4-乙烯基吡啶)-per基双酰亚胺P4VP(PDP-UPBI)_(1.0)在不同极性的溶剂如氯仿(CHCI3)和甲基环己烷(MCH)中的自组装行为。分别在CDCI3和氘代1,1,2,2-四氯乙烷(TCE)中进行的可变浓度和可变温度的质子NMR研究揭示了bis二酰亚胺在络合时的聚合性质以及溶液中自组织结构的高热稳定性。络合作用所提供的改善的溶解度使得能够在非极性溶剂MCH中进行可变温度的UV-Vis吸收研究,这表明存在牢固的面对面堆叠H型聚集体。 MCH中强烈的荧光猝灭也支持鉴定聚集体的性质为共面H型。尽管在氯仿稀溶液中聚集体的存在不是很明显,但是与PDP-UPBI相比,P4VP(PDP-UPBI)_(1.0)的荧光被猝灭了。由氯仿形成的复合物的薄旋涂膜具有旋转位移的H型聚集体特征,其特征是最大吸收峰发生蓝移,并在540 nm处出现新的红移峰,且聚集体发射超过600 nm。使用扫描电子显微镜(SEM)和透射电子显微镜(TEM)对滴铸样品进行形态分析,结果表明,将溶剂切换为MCH后,由CHCl3和二维多层纳米片形成了微米级的多层纳米纤维。

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