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首页> 外文期刊>Dyes and Pigments >No effect of the hydrogen bonds on the physicochemical properties of the guest-host poly(amide imide) azosystems and efficiency of chromophore orientation
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No effect of the hydrogen bonds on the physicochemical properties of the guest-host poly(amide imide) azosystems and efficiency of chromophore orientation

机译:氢键对客体聚(酰胺酰亚胺)偶氮系统和发色团取向效率的物理化学性质的影响

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In this paper, we show a series of the new noncovalent azosystems based on poly(amide imide) matrices. Azobenzene derivatives were attached to the polymer matrix via hydrogen bonds or formed doped systems. Additionally, glass transition temperatures of azosystems were established by the calculation procedure based on Fox equation. We proved that presence H-bonds between polymer matrix and chromophore does not effect on increase T-g and T-5, in comparison to the doped polymers. It was observed that poly(amide imide) matrices are able to the thermally induced intermolecular cross-linking via hydrogen bonds. Functional density theory (DFT) was used to observed both changes in geometry the polymer matrix before and after incorporation of the azodyes and H-bonds formation possibility. The presence of H-bonds both intermolecular and between polymer and chromophore was confirmed experimentally by FTIR and H-1 NMR spectroscopy. The supramolecular system based on the matrix with pyridine rings in the side chains and 4-[(4-methyl phenyl)diazenyl]phenol was found to show a relatively efficient photo-orientation process. We showed the hydrogen bonds between chromophore and polymer matrix did not provide higher and more stable the photoinduced birefringence in comparison with doped one. It seems that the critical parameter which impacts on values and stability of Delta n is azo-dye content.
机译:在本文中,我们展示了基于聚(酰胺酰亚胺)基质的新的非共价亚氮杂系统。通过氢键或形成掺杂的系统将偶氮苯衍生物连接到聚合物基质上。另外,通过基于Fox方程的计算过程建立了偶氮系统的玻璃化转变温度。我们证明,与掺杂的聚合物相比,聚合物基质和发色团之间的存在H键对增加T-G和T-5产生影响。观察到聚(酰胺酰亚胺)基质能够通过氢键热诱导的分子间交联。使用功能密度理论(DFT)用于观察聚合物基质的几何形状的变化,并在掺入亚氮杂物和H键形成可能性之后。通过FTIR和H-1 NMR光谱实验证实了分子间和聚合物和发色团之间的H键的存在。发现基于基质的基于吡啶环和侧链和4 - (4-甲基苯基)二亚苯基]苯酚的超分子系统显示出相对有效的光学取向过程。我们展示了发色团和聚合物基质之间的氢键没有提供更高且更稳定的光诱导的双射流与掺杂物相比。似乎对ΔN的值和稳定性影响的关键参数是偶氮染料含量。

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