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Spectroscopic investigations and ab initio computations of the dye Chromotrope 2R

机译:染料Chromotrope 2R的光谱研究和从头算

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Detailed analysis of the NIR FT-Raman, FT-IR and UV-visible spectra of the dye Chromotrope 2R (C2R) has been performed. The optimized geometry of the dye is theoretically computed with the HF and DFT levels using the standard 6-31G(d) and LANL2DZ basis sets. Optimized geometry and vibrational spectra indicate that the major species in the solid state are the trans form of hydrogen bonded hydrazone tautomer. The effect of H-bonding in stabilizing a particular type of structure is also discussed. The most preferred trans-configuration for its photochemical activity has been demonstrated on the basis of torsional potential energy surface (PES) scan studies. The optimized geometries and calculated vibrational wavenumbers are evaluated via comparison with experimental values. Electronic spectra are in accordance with the nature of the electronic transitions predicted by time-dependent B3LYP/DZ calculations.
机译:已对染料Chromotrope 2R(C2R)的NIR FT-拉曼光谱,FT-IR光谱和UV可见光谱进行了详细分析。理论上,使用标准6-31G(d)和LANL2DZ基集,可以通过HF和DFT含量计算出染料的最佳几何形状。优化的几何结构和振动光谱表明,固态的主要物质是氢键合t互变异构体的反式。还讨论了氢键在稳定特定类型结构中的作用。基于扭转势能表面(PES)扫描研究已证明了其光化学活性最优选的反式构型。通过与实验值进行比较来评估优化的几何形状和计算出的振动波数。电子光谱符合通过依赖时间的B3LYP / DZ计算所预测的电子跃迁的性质。

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