首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >Vibrational population relaxation of hydrogen-bonded phenol complexes in solution: Investigation by ultrafast infrared pump-probe spectroscopy
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Vibrational population relaxation of hydrogen-bonded phenol complexes in solution: Investigation by ultrafast infrared pump-probe spectroscopy

机译:氢键合酚络合物在溶液中的振动种群弛豫:超快速红外泵浦-探针光谱法的研究

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摘要

We investigated the vibrational population relaxation of the OH stretching mode of hydrogen-bonded phenol complexes in solution by ultrafast infrared spectroscopy. For a phenol-benzonitrile complex, vibrational population relaxation takes place at around 5 ps. The decay time constants of the pump-probe signals do not depend on the probe frequency. We also measured the pump-probe signals of the OH stretching vibrations for phenol-acetone, phenol-diethylether and phenol-tetrahydrofuran complexes. We found that the time scales of vibrational population relaxation for these complexes are correlated with hydrogen bond strength; i.e., stronger hydrogen bonding leads to faster vibrational population relaxation. We did not observe a clear probe frequency dependence in relaxation rates. For these complexes, rapid evolution between different conformations causes fast fluctuation in the vibrational frequency of the OH stretching modes. This fluctuation averages out the vibrational population relaxation times of different conformations. In contrast, the decay time constants of pump-probe signals for hydrogen-bonded phenol oligomers were found to depend significantly on probe frequency. The decay time constant at the blue side (3521 cm(-1)) was 2.1 ps, while that at the red side (3320 cm(-1)) was 0.7 ps. We discuss the probe frequency dependence of vibrational population relaxation times for hydrogen-bonded phenol oligomers in solution. (c) 2007 Elsevier B.V. All rights reserved.
机译:我们通过超快红外光谱研究了溶液中氢键酚复合物的OH拉伸模式的振动种群弛豫。对于苯酚-苄腈配合物,振动人口弛豫发生在大约5 ps处。泵浦探针信号的衰减时间常数不取决于探针频率。我们还测量了苯酚-丙酮,苯酚-二乙醚和苯酚-四氢呋喃配合物的OH拉伸振动的泵浦信号。我们发现,这些配合物的振动种群弛豫的时间尺度与氢键强度相关。即,更强的氢键导致更快的振动总体弛豫。我们没有观察到明显的探针频率对弛豫率的依赖性。对于这些配合物,不同构象之间的快速演化导致OH拉伸模式的振动频率快速波动。这种波动使不同构型的振动总体弛豫时间平均化。相反,发现氢键合酚低聚物的泵浦探针信号的衰减时间常数显着取决于探针频率。蓝色侧(3521 cm(-1))的衰减时间常数为2.1 ps,而红色侧(3320 cm(-1))的衰减时间常数为0.7 ps。我们讨论了氢键合苯酚低聚物在溶液中振动种群弛豫时间的探针频率依赖性。 (c)2007 Elsevier B.V.保留所有权利。

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