首页> 外文期刊>The Journal of Chemical Physics >Intramolecular O-HS hydrogen bonding in threefold symmetry: Line broadening dynamics from ultrafast 2DIR-spectroscopy and ab initio calculations
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Intramolecular O-HS hydrogen bonding in threefold symmetry: Line broadening dynamics from ultrafast 2DIR-spectroscopy and ab initio calculations

机译:三倍对称性中的分子内O-HS氢键:超快2dir光谱和AB Initio计算的线扩大动力学

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The dynamics of intramolecular hydrogen-bonding involving sulfur atoms as acceptors is studied using two-dimensional infrared (2DIR) spectroscopy. The molecular system is a tertiary alcohol whose donating hydroxy group is embedded in a hydrogen-bond potential with torsional C-3-symmetry about the carbon-oxygen bond. The linear and 2DIR-spectra recorded in the OH-stretching region of the alcohol can be simulated very well using Kubo's line shape theory based on the cumulant expansion for evaluating the linear and nonlinear optical response functions. The correlation function for OH-stretching frequency fluctuations reveals an ultrafast component decaying with a time constant of 700 fs, which is in line with the apparent decay of the center line slopes averaged over absorption and bleach/emission signals. In addition, a quasi-static inhomogeneity is detected, which prevents the 2DIR line shape to fully homogenize within the observation window of 4 ps. The experimental data were then analyzed in more detail using a full ab initio approach that merges time-dependent structural information from classical molecular dynamics (MD) simulations with an OH-stretching frequency map derived from density functional theory (DFT). The latter method was also used to obtain a complementary transition dipole map to account for non-Condon effects. The 2DIR-spectra obtained from the MD/DFT method are in good agreement with the experimental data at early waiting delays, thereby corroborating an assignment of the fast decay of the correlation function to the dynamics of hydrogen-bond breakage and formation.
机译:利用二维红外光谱研究了以硫原子为受体的分子内氢键动力学。该分子系统是一种叔醇,其供体羟基嵌入氢键势中,碳氧键具有扭转C-3对称性。基于累积量展开的Kubo线型理论可以很好地模拟乙醇OH伸缩区的线性和二维红外光谱,以评估线性和非线性光学响应函数。OH拉伸频率波动的相关函数揭示了一个超快成分的衰减,其时间常数为700 fs,这与吸收和漂白/发射信号上平均的中心线斜率的表观衰减一致。此外,检测到准静态不均匀性,这防止了2DIR线型在4ps的观察窗口内完全均匀化。然后,使用完整的从头算方法对实验数据进行了更详细的分析,该方法将经典分子动力学(MD)模拟的时间相关结构信息与密度泛函理论(DFT)导出的OH拉伸频率图相结合。后一种方法也用于获得互补跃迁偶极子图,以考虑非康顿效应。从MD/DFT方法获得的二维红外光谱与早期等待延迟时的实验数据非常一致,从而证实了关联函数的快速衰减对氢键断裂和形成动力学的分配。

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