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首页> 外文期刊>The Journal of Chemical Physics >Structural dynamics of hydrogen bonded methanol oligomers: Vibrational transient hole burning studies of spectral diffusion
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Structural dynamics of hydrogen bonded methanol oligomers: Vibrational transient hole burning studies of spectral diffusion

机译:氢键合甲醇低聚物的结构动力学:光谱扩散的振动瞬态孔燃烧研究

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Frequency resolved pump-probe experiments have been conducted on the deuterated hydroxyl stretch of methanol-d in a solution containing 0.8% methanol-d/23% methanol-h in carbon tetrachloride. Methanol-d molecules that both donate and receive hydrogen bonds have an inhomogeneouly broadened hydroxyl stretch absorption line centered at 2487 cm~(-1). With a laser tuned to 2513 cm~(-1), the high-frequency side of the absorption spectrum is excited. The equilibriation of the excited state peak and the ground-state hole results in the time-dependent shift in the frequency of the signal, which is used to monitor the dynamics of spectral diffusion. Model calculations were conducted to address the influence of spectral diffusion in the ground and excited states on the experimental observalues when the vibrational lifetime is comparable to the spectral diffusion time. The model calculations illustrate the influence on the signal of absorbers in the ground state that have relaxed from the excited state. This aspect of the problem has not been addressed in previous descriptions of frequency resolved pump-probe spectroscopy. The calculations were used to fit the time-dependent peak maximum, resulting in a bi-exponential frequency-frequency correlation function, with a fast time constant of roughly 0.1 ps and a slower time constant of 1.6 (+-) 0.3 ps. The observed dynamics have been compared with the predictions of dielectric continuum theory. The inability of a simple dielectric continuum theory to predict the observed spectral diffusion dynamics suggests that these dynamics do not result from the long-wavelength, collective orientational relaxation of the solvent. Instead the dynamics are attributed to fluctuations in the local hydrog en bond network, which is consistent with recent molecular-dynamics simulations of vibrational transient hole burning in water.
机译:在含四氯化碳中0.8%甲醇-d / 23%甲醇-h的溶液中,对甲醇-d的氘代羟基延伸进行了频率分辨泵浦探针实验。既提供氢键又接受氢键的甲醇-d分子的羟基拉伸吸收线不均匀,宽度为2487 cm-1(-1)。用调谐到2513 cm〜(-1)的激光激发吸收光谱的高频侧。激发态峰和基态空穴的平衡导致信号频率随时间的变化,这用于监视频谱扩散的动态。当振动寿命与光谱扩散时间相当时,进行模型计算以解决基态和激发态的光谱扩散对实验观测值的影响。模型计算说明了对基态吸收器信号的影响,该吸收器已从激发态中释放出来。在频率分辨泵浦光谱的先前描述中尚未解决该问题的这一方面。该计算用于拟合随时间变化的峰值最大值,从而产生双指数频率-频率相关函数,其快速时间常数约为0.1 ps,而较慢的时间常数为1.6(+/-)0.3 ps。已将观察到的动力学与介电连续体理论的预测进行了比较。简单的介电连续体理论无法预测观察到的光谱扩散动力学,表明这些动力学不是由溶剂的长波长,集体取向松弛引起的。取而代之的是,动力学归因于局部水力键合网络中的波动,这与最近对水中振动瞬态孔洞燃烧的分子动力学模拟是一致的。

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