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Evidence for excited state intramolecular charge transfer in benzazole-based pseudo-stilbenes

机译:苯并唑基伪对苯二甲酸酯在激发态分子内电荷转移的证据

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Two azo compounds were obtained through the diazotization reaction of aminobenzazole derivatives and N,N-dimethylaniline using clay montmorillonite KSF as catalyst. The synthesized dyes were characterized using elemental analysis, Fourier transform infrared spectroscopy, and ~(13)C and ~1H NMR spectroscopy in solution. Their photophysical behavior was studied using UV-vis and steady-state fluorescence in solution. These dyes present intense absorption in the blue region. The spectral features of the azo compounds can be related to the pseudo-stilbene type as well as the E isomer of the dyes. Excitation at the absorption maxima does not produce emissive species in the excited state. However, excitation around 350 nm allowed dual emission of fluorescence, from both a locally excited (LE, short wavelength) and an intramolecular charge transfer (ICT, long wavelength) state, which was corroborated by a linear relation of the fluorescence maximum (v_(max)) versus the solvent polarity function (Δf) from the Lippert-Mataga correlation. Evidence of TICT in these dyes was discussed from the viscosity dependence of the fluorescence intensity in the ICT emission band. Theoretical calculations were also performed in order to study the geometry and charge distribution of the dyes in their ground and excited electronic states. Using DFT methods at the theoretical levels BLYP/Aug-cc-pVDZ, for geometry optimizations and frequency calculations, and B3LYP/6-311+G(2d), for single-point energy evaluations, the calculations revealed that the least energetic and most intense photon absorption leads to a very polar excited state that relaxes non-radioactively, which can be associated with photochemical isomerization.
机译:以粘土蒙脱土KSF为催化剂,通过氨基苯并唑衍生物与N,N-二甲基苯胺的重氮化反应,得到了两种偶氮化合物。使用元素分析,傅立叶变换红外光谱以及溶液中的〜(13)C和〜1H NMR光谱对合成的染料进行表征。使用溶液中的紫外可见和稳态荧光研究了它们的光物理行为。这些染料在蓝色区域呈现强烈吸收。偶氮化合物的光谱特征可能与假二苯乙烯类型以及染料的E异构体有关。吸收最大值处的激发不会在激发态下产生发射物种。但是,在350 nm附近激发可以使荧光从局部激发(LE,短波长)和分子内电荷转移(ICT,长波长)状态双重发射,这由荧光最大值(v_( Lippert-Mataga相关性)与溶剂极性函数(Δf)的关系。从ICT发射带中荧光强度的粘度依赖性讨论了这些染料中TICT的证据。为了研究染料在其基态和激发电子态下的几何形状和电荷分布,还进行了理论计算。在理论水平BLYP / Aug-cc-pVDZ上使用DFT方法进行几何优化和频率计算,在B3LYP / 6-311 + G(2d)进行单点能量评估时,这些计算显示出能量最低,能量最高强烈的光子吸收会导致极极性的激发态,该态非放射性地松弛,这可能与光化学异构化有关。

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