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A mid infrared study of dynamic processes in iodine-pyridine charge transfer complexes

机译:碘-吡啶电荷转移复合物动力学过程的中红外研究

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摘要

The mid IR absorption spectra of the iodine-pyridine charge-transfer complex diluted in an 'inert' solvent have been measured as a function of the donor concentration in the ternary mixture. The enhanced internal modes of pyridine as well as the new vibrational modes of the complex were assigned on the basis of a recent ab-initio study. The results obtained confirm the observation and assignment reported in earlier literature measurement for the iodine-pyridine system very diluted in ternary mixture. The spectral characteristics (shifts, band centre frequencies and widths) of the profiles associated with the internal modes of the complex have been characterised using Lorentzian bandshape. The interpretation of the spectral changes upon the variation of the donor concentration in the mixture has been performed on the profiles associated with both the v_1 and v_3 internal modes (A_1 symmetry) using a model of the dipolar interaction between the transition dipole moment of the internal mode with the dipoles of the surrounding solvent molecule. In this theoretical framework, the more relevant result concerns the mechanism governing the bandshapes. This is found to involve vibrational relaxation by pure dephasing, with an associated correlation time close to the rotational correlation time of the solvent molecules. These conclusions support fully the ones obtained from the study of the acceptor (v_(I-I)) and intermolecular (v_(D-I)) vibrations using far infrared spectroscopy that we have reported before.Finally, the merits and limits of the two approaches is critically assessed.
机译:在“惰性”溶剂中稀释的碘-吡啶电荷转移复合物的中红外吸收光谱已根据三元混合物中供体浓度的函数进行了测量。根据最近的从头算研究,确定了吡啶增强的内部模式以及复合物的新振动模式。获得的结果证实了在较早的文献中报道的三元混合物中非常稀释的碘-吡啶体系的观察结果和归属。与复合物的内部模式相关联的轮廓的光谱特征(位移,能带中心频率和宽度)已使用洛伦兹带形进行了表征。使用内部跃迁偶极矩之间的偶极相互作用模型,在与v_1和v_3内部模态(A_1对称性)相关的轮廓上执行了混合物中供体浓度变化时光谱变化的解释。模式与周围溶剂分子的偶极子在这个理论框架中,更相关的结果涉及控制带形的机制。发现这涉及通过纯相移引起的振动松弛,相关的相关时间接近于溶剂分子的旋转相关时间。这些结论完全支持我们之前报道的使用远红外光谱研究受体(v_(II))和分子间(v_(DI))振动所获得的结论。最后,这两种方法的优缺点是至关重要的评估。

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