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首页> 外文期刊>Macromolecules >Optically active phthalocyaninato-polysiloxane constructed from achiral monomers: From noncovalent assembly to covalent polymer
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Optically active phthalocyaninato-polysiloxane constructed from achiral monomers: From noncovalent assembly to covalent polymer

机译:由非手性单体构成的旋光性酞菁基聚硅氧烷:从非共价组装到共价聚合物

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摘要

In this paper, we reported that optically active supramolecular assemblies of an achiral phthalocyanine derivative, silicon 2,3,9,10,16,17,23,24-octakis(octyloxy)-29H,31H-phthalocyanine dihydroxide (Pc 1), could be easily achieved through the Langmuir and Langmuir-Schaefer (LS) technique. We have found that the LS film of Pc 1 showed weak Cotton effect (CE) when it was subjected to the circular dichroism (CD) measurements. The chirality of the LS film was suggested to be due to the spontaneous symmetry breaking occurred at the air/water interface. More interestingly, such assemblies connected through the noncovalent bond could be further converted into covalent bond under heating at 180 degrees C in a high vacuum for 10 h. UV-vis spectra and FT-IR have confirmed the polymerization of Pc 1 in the LS film during the heating, which resulted in the formation of the corresponding phthalocyaninato-polysiloxane (PcPs 2) polymer. Stronger Cotton effect was detected for the thin solid film of PcPs 2 compared with that of the Pc 1 LS film, suggesting that more efficient exciton coupling existed between the covalently linked phthalocyanine chromophore in the polymer PcPs 2. The investigation provided an easy way of constructing optically active polymeric PcPs films exclusively from achiral monomer unit by the preassembly of monomer through interfacial organization.
机译:在本文中,我们报道了非手性酞菁衍生物,硅2,3,9,10,16,17,23,24-辛基(辛氧基)-29H,31H-酞菁二氢氧化物(Pc 1)的光学活性超分子组装体,通过Langmuir和Langmuir-Schaefer(LS)技术可以轻松实现。我们发现,当进行圆二色性(CD)测量时,Pc 1的LS膜显示出较弱的Cotton效应(CE)。 LS膜的手性被认为是由于在空气/水界面处发生了自发的对称性破坏。更有趣的是,通过非共价键连接的此类组件可以在高真空下于180摄氏度加热10小时的条件下进一步转化为共价键。紫外可见光谱和FT-IR证实了加热过程中LS膜中Pc 1的聚合,这导致形成了相应的邻苯二甲酰氰基-聚硅氧烷(PcPs 2)聚合物。与Pc 1 LS薄膜相比,检测到的PcPs 2固体薄膜的棉花效应更强,这表明聚合物PcPs 2中共价连接的酞菁生色团之间存在更有效的激子偶联。该研究提供了一种简便的构建方法光学活性聚合物PcPs膜仅通过手性单体通过界面组织的预组装而从非手性单体单元获得。

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