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A novel barbituric acid-based azo dye and its derived polyamides: Synthesis, spectroscopic investigation and computational calculations

机译:新型巴比妥酸基偶氮染料及其衍生的聚酰胺:合成,光谱研究和计算计算

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摘要

5-[(3,5-dicarboxyphenyl)azo]-barbituric acid, an azo-based aromatic diacid was prepared and fully characterized by FT IR, ~1H and ~(13)C NMR along with UV—vis absorption spectroscopy. The effects of varying pH and solvent upon the absorption spectrum of the azo dye were investigated. The optimized molecular structures of possible tautomeric forms and HOMO—LUMO energies of expecting preferred forms of the synthesized heterocyclic azo dye have been calculated using density functional theory, (B3LYP) methods with TZVP basis set level and Polarizable Continuum Model (PCM) model for solvation effect. The calculations showed that the most probably preferred form of the azo dye in gas phase and solution was a hydrazone-keto form. FT IR and UV—vis spectroscopy, DSC, TGA and XRD techniques were used to obtain the characteristics and structural features of the monomer-synthesized polyamides. The influence of organic solvents on the absorption spectra of the polymers along with viscosity measurements (0.19—0.44 dl/g), solubility and film formability of the synthesized polyamides were also investigated.
机译:制备了5-[(3,5-二羧基苯基)偶氮]-巴比妥酸,一种基于偶氮的芳族二酸,并通过FT IR,〜1H和〜(13)C NMR以及紫外可见吸收光谱对其进行了全面表征。研究了pH和溶剂的变化对偶氮染料吸收光谱的影响。使用密度泛函理论,TZVP基集水平的(B3LYP)方法和可极化的连续体模型(PCM)模型,计算了可能的互变异构形式的分子结构和合成杂环偶氮染料的优选形式的HOMO-LUMO能量。影响。计算表明,气相和溶液中偶氮染料最可能优选的形式是a酮形式。利用红外光谱和红外光谱,DSC,TGA和XRD技术获得了单体合成聚酰胺的特性和结构特征。还研究了有机溶剂对聚合物吸收光谱的影响,以及合成聚酰胺的粘度测量值(0.19-0.44 dl / g),溶解度和成膜性。

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