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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Mechanochromic Luminescent Tetrathiazolylthiophenes: Evaluating the Role of Intermolecular Interactions through Pressure and Temperature-Dependent Raman Spectroscopy
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Mechanochromic Luminescent Tetrathiazolylthiophenes: Evaluating the Role of Intermolecular Interactions through Pressure and Temperature-Dependent Raman Spectroscopy

机译:机械光学升温四噻唑啉烯烃:评估分子间相互作用通过压力和温度依赖性拉曼光谱的作用

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摘要

The Raman spectrum of the mechanochromic luminescent tetrathiazolylthiophene has been investigated as a function of pressure and temperature. This study verifies the sensitivity of the Raman spectroscopy as a technique to characterize and understand the structural effects causing any mechanochromic changes. Continuous and evident Raman shifts and changes in intensities of the strongest lines in the spectra occur while increasing pressure or lowering temperature. These spectral changes are related to the modulation of intermolecular C-H center dot center dot center dot N hydrogen bonding previously identified for this system. The Raman bands involved are assigned to collective normal modes associated to the CC bond stretching of the rings and reveal that the modulation of local hydrogen bonding interaction has indeed an effect that has an impact on the whole conjugated structure of the molecule. Pressure-dependent Raman spectra have been also computed by means of periodic density functional theory calculations of the crystal, giving an accurate prediction of the experimental trends.
机译:通过压力和温度的函数研究了机械铬发光四噻唑噻吩的拉曼光谱。本研究验证拉曼光谱的敏感性作为表征和理解导致任何机械变性变化的结构效果的技术。在增加压力或降低温度的同时发生连续和明显的拉曼偏移和光谱中最强线的强度变化。这些光谱变化与先前鉴定为该系统的分子间C-H中心点中心点中心点N氢键的调制有关。所涉及的拉曼带被分配到与环的CC键拉伸相关的集体正常模式,并揭示局部氢键相互作用的调节确实是对分子的整个共轭结构产生影响的效果。还通过周期性密度函数理论计算来计算压力依赖的拉曼光谱,其晶体的周期性函数理论计算,提供了对实验趋势的准确预测。

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