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Supramolecular Polypseudorotaxane with Conjugated Polyazomethine Prepared Directly from Two Inclusion Complexes of beta-Cyclodextrin with Tolidine and Phthaldehyde

机译:由β-环糊精与甲苯胺和邻苯二甲醛的两种包合物直接制备的超分子聚伪轮烷与共轭聚偶氮甲碱

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The Supramolecular polypseudorotaxane (3) with pi-conjugated polyazomethine is directly synthesized by the polycondensation of two simple inclusion complexes of beta-cyclodextrin/o-tolidine (1) and beta-cyclodextrin/p-phthaldehyde (2) and is comprehensively characterized by NMR,FTIR,circular dichroism spectra,powder X-ray diffraction,thermogravimetric (TG) and differential thermal analysis (DTA),scanning electron microscopy (SEM),and scanning tunneling microscopy (STM) both in solution and in the solid state.The results obtained have revealed linear microstructure of polypseudorotaxane 3 and different photophysical behavior as compared with the pi-conjugated polyazomethine backbone (4).The present investigations prove a simple method for preparing Supramolecular polypseudorotaxane by different complexes,which possess the potential to serve as molecular devices/machines and optical materials.
机译:由π-环糊精/邻甲苯胺(1)和β-环糊精/对苯甲醛(2)的两个简单包合物的缩聚反应可直接合成具有π-共轭聚偶氮甲碱的超分子聚伪轮烷(3)。 ,固态,固相分析,FTIR,圆二色谱,粉末X射线衍射,热重(TG)和差热分析(​​DTA),扫描电子显微镜(SEM)和扫描隧道显微镜(STM)。结果所得结果表明,与π共轭聚偶氮甲亚胺骨架相比,聚伪轮烷3的线性微观结构和不同的光物理行为。本研究证明了通过不同的配合物制备超分子聚伪轮烷的简单方法,具有作为分子装置的潜力/机器和光学材料。

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