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Synthesis and Photophysical Properties of Novel Highly Stable Zero/Bis-Zero Methine Cyanine Dyes Based on N-Bridgehead Heterocycles

机译:基于N-桥头杂环的新型高度稳定的零/双-零-零甲基花菁染料的合成及光物理性质

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Cyanine dyes of zero/bis-zero methine incorporating imid-azo(1,2-a)Pyridine (quinoline) or pyrazino(1,2-a)pyridine (quinoline) with stable C-N bond were synthesized using keto-oxime methylene C-link heterocyclic quaternary salts [1-phenyl-3-methyl-pyrazolino-4-keto-oxime-α -methylene-bis-pyridin-(quinoin)-1(4)-di-ium-iodide(ethiodide) salts and 1-phenyl-3-methyl-pyrazolino- 4-ketooxime-α -methylene-N-2-methyl-bis pyridin (quinoin)-1(4)-di-ium-iodide(ethiodide) salts]. Such heterocyclic precursors and related dyes were identified by elemental and spectral analyses. The absorption spectra properties of such dyes were investigated in 95% Ethanol to attempt and throw some light on the influence of such new heterocyclic nuclei and to compare or evaluate spectral behaviors. The absorption spectra of dyes in different pure solvents were examined in the visible region showing solvatochromism and the colour changes of dyes with solvents having different polarities. This permits a selection of the optimal solvent (fractional solvent) when such dyes are applied as photosensitizers. The spectral behavior of some selected newly synthesized cyanine dyes is observed in mixed solvents of different polarities and progressively increasing quantities of one solvent over the other were studied and showed an increase in the absorbance of CT band with increasing proportion of that solvent. Evidence for hydrogen bond formation between the solute molecules and solvent molecules allows measurement of certain energies such as hydrogen bonding, orientation, and free energies.
机译:使用酮肟肟亚甲基C-合成了具有咪唑-偶氮(1,2-a)吡啶(喹啉)或吡嗪并(1,2-a)吡啶(喹啉)的具有稳定CN键的零/双零次甲基花青染料。连接杂环季盐[1-苯基-3-甲基-吡唑啉基-4-酮肟-i-亚甲基-双吡啶-(喹啉)-1(4)-碘化二碘盐和1-苯基-3-甲基-吡唑啉--4-酮肟-α-亚甲基-N-2-甲基-双吡啶(喹啉)-1(4)-碘化二碘(乙硫醇)盐]。通过元素分析和光谱分析鉴定了这些杂环前体和相关的染料。在95%的乙醇中研究了此类染料的吸收光谱特性,以尝试对此类新杂环原子的影响施加一些影响,并比较或评估光谱行为。在可见光区域检查了染料在不同纯溶剂中的吸收光谱,显示出溶剂致变色现象以及染料在极性不同的溶剂中的颜色变化。当将这类染料用作光敏剂时,可以选择最佳溶剂(分馏溶剂)。在不同极性的混合溶剂中观察到一些选定的新合成花青染料的光谱行为,并且研究了一种溶剂相对于另一种溶剂的逐渐增加的现象,并显示出随着该溶剂比例的增加,CT谱带的吸光度增加。溶质分子和溶剂分子之间形成氢键的证据允许测量某些能量,例如氢键,取向和自由能。

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