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氢键 2-吡啶酮二聚体模型体系。2. 飞秒中红外泵浦探测研究。

The hydrogen-bonded 2-pyridone dimer model system. 2. Femtosecond mid-infrared pump-probe study.

机构信息

Max Born Institut für Nichtlineare Optik und Kurzzeitspektroskopie, Max Born Strasse 2A, D-12489 Berlin, Germany.

出版信息

J Phys Chem A. 2010 Nov 25;114(46):12195-201. doi: 10.1021/jp108096y. Epub 2010 Nov 1.

Abstract

2-Pyridone (PD) tautomerises to 2-hydroxypyridine (HP) in liquid solution, the equilibrium of which is solvent dependent. Dimerization of PD and HP leads to the cyclic dimers (PD)(2), (HP)(2), and (PD-HP). A combined NMR and FT-IR study [Szyc, Ł.; et al. J. Phys. Chem. A 2010, 114, 7749-7760] has shown that solutions of 2-pyridone in CD(2)Cl(2) constitute mainly PD-CD(2)Cl(2) solute-solvent complexes and cyclic dimers (PD)(2). Because of a lack of specific marker modes, a contribution of the cyclic dimer (HP)(2) to the NH/OH stretching absorption between 2400 and 3300 cm(-1) could not be fully ruled out. Here, we present the first ultrafast infrared (IR) pump-probe experiments on the NH/OH stretching region of a solution of 2-pyridone in CD(2)Cl(2). The temporally and spectrally resolved data reveal different rate-like relaxation processes with time constants between 150 fs and 20 ps as well as coherent low-frequency oscillations due to hydrogen bond modes. An analysis shows that the transient behavior is dominated by a single hydrogen bonded species. We compare the low-frequency wavepacket motions, observed with 99 and 150 cm(-1) frequencies, with literature values as well as our quantum chemical calculations and conclude that this single molecular species is cyclic (PD)(2).

摘要

2-吡啶酮(PD)在液态溶液中互变异构为 2-羟基吡啶(HP),平衡状态取决于溶剂。PD 和 HP 的二聚化导致形成环状二聚体(PD)(2)、(HP)(2)和(PD-HP)。一项结合 NMR 和 FT-IR 的研究[Szyc, Ł.; et al. J. Phys. Chem. A 2010, 114, 7749-7760]表明,2-吡啶酮在 CD(2)Cl(2)中的溶液主要由 PD-CD(2)Cl(2)溶质-溶剂配合物和环状二聚体(PD)(2)组成。由于缺乏特定的标记模式,无法完全排除环状二聚体(HP)(2)对 2400 至 3300 cm(-1)之间的 NH/OH 伸缩吸收的贡献。在这里,我们首次在 2-吡啶酮在 CD(2)Cl(2)溶液的 NH/OH 伸缩区域进行超快红外(IR)泵浦-探测实验。时间分辨和光谱分辨的数据揭示了不同的类速率松弛过程,时间常数在 150 fs 和 20 ps 之间,以及由于氢键模式产生的相干低频振荡。分析表明,瞬态行为主要由单个氢键物种主导。我们将观察到的 99 和 150 cm(-1)频率的低频波包运动与文献值以及我们的量子化学计算进行比较,并得出结论,这种单一的分子物种是环状(PD)(2)。

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