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Pervasive interactions between methyl torsion and low frequency vibrations in S-0 and S-1 p-fluorotoluene

机译:S-0和S-1氟丙烯甲基致致迁移和低频振动之间的普遍相互作用

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We report two dimensional laser induced fluorescence spectral images exploring the lower torsion-vibration manifolds in S-0 (E 560 cm(-1)) and S 1 (E 420 cm(-1)) p-fluorotoluene. Analysis of the images reveals strong torsion-vibration interactions and provides an extensive set of torsion-vibration state energies in both electronic states (estimated uncertainty +/- 0.2 cm(-1)), which are fit to determine key constants including barrier heights, torsional constants, and torsion-vibration interaction constants. The dominant interactions in both electronic states are between methyl torsion (internal rotation) and the lowest frequency out-of-plane modes, D-20 and D-19, both of which involve a methyl wagging motion. This is the second aromatic (following toluene) for which a significant interaction between torsion and methyl out-of-plane wagging vibrations has been quantified. Given the generic nature of this motion in substituted toluenes and similar molecules, this mechanism for torsion-vibration coupling may be common in these types of molecules. The inclusion of torsion-vibration coupling affects key molecular constants such as barrier heights and torsional (and rotational) constants, and the possibility of such an interaction should thus be considered in spectral analyses when determining parameters in these types of molecules. p-Fluorotoluene is the first molecule in which the role of methyl torsion in promoting intramolecular vibrational energy redistribution (IVR) was established and the observed torsion-vibration coupling provides one conduit for the state mixing that is a precursor to IVR, as originally proposed by Moss et al. [J. Chem. Phys. 86, 51 (1987)]. Published by AIP Publishing.
机译:我们报告了二维激光诱导的荧光光谱图像探索S-0中的较低扭转振动歧管(E <560cm(-1))和S1(E&LT; 420cm(-1))对氟橡胶。图像分析揭示了强大的扭转振动相互作用,并在电子状态下提供了一组大量的扭转振动状态能量(估计的不确定性+/- 0.2cm(-1)),其适合确定包括障碍高度的关键常数,扭转常数,扭转振动相互作用常数。两种电子状态的主要相互作用在甲基扭转(内部旋转)和最低频率外部模式之间,D-20和D-19,两者都涉及甲基摇动运动。这是第二芳族(甲苯甲苯),其扭转和甲基外平面外摇动振动之间的显着相互作用已经量化。鉴于这种运动在取代甲苯和类似分子中的通用性质,这种用于扭转振动耦合的机理可能在这些类型的分子中是常见的。扭转振动耦合的包含影响诸如屏障高度和扭转(和旋转)常数的关键分子常数,因此在确定这些类型分子中的参数时,应考虑在光谱分析中考虑这种相互作用的可能性。对氟烷橡胶是第一种分子,其中建立了甲基扭转在促进分子内振动能量再分布(IVR)中的作用,并且观察到的扭转振动耦合为最初提出的状态混合提供一种导管,其是最初提出的伊氏的前体。苔藓等。 [J.化学。物理。 86,51(1987)]。通过AIP发布发布。

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