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Vibrational energy redistribution of ethanol oligomers and dissociation of hydrogen bonds after ultrafast infrared excitation

机译:超快红外激发后乙醇低聚物的振动能重新分布和氢键的解离

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摘要

2-color infrared spectroscopy of associated ethanol molecules is carried out viith subpicosecond time resolution in the solvent carbon tetrachloride (1.2 M) at room temperature. After excitation of the CH-vibration at 2974 cm(-1) rapid population redistribution with a time constant < 0.5 ps is observed within the CH-stretching region in agreement with earlier observations, while an effective population lifetime of 12 +/- 2 ps is measured. In addition, amazingly fast dissociation of H-bonds occurs, the dominant component of which is governed by a time constant of approximately 2 ps and proposed to be of thermal origin. Further spectral features are discussed, e.g. energy transfer between CH- and OH-vibrations. (C) 1998 Elsevier Science B.V. [References: 28]
机译:在室温下,在溶剂四氯化碳(1.2 M)中进行亚皮秒时间分辨,进行了相关乙醇分子的2色红外光谱分析。在2974 cm(-1)激发CH振动后,在CH拉伸区域内观察到时间常数<0.5 ps的快速种群重新分布,这与早期的观察结果一致,而有效种群寿命为​​12 +/- 2 ps被测量。另外,发生了惊人的H键快速解离,其主要成分由大约2 ps的时间常数控制,并被认为是热起源的。讨论了进一步的光谱特征,例如。 CH和OH振动之间的能量转移。 (C)1998 Elsevier Science B.V. [参考:28]

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