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硫化氢-氟化氢中氢键的振动动力学:傅里叶变换红外光谱与从头算理论

Vibrational dynamics of the hydrogen bond in H(2)S-HF: Fourier-transform-infrared spectra and ab initio theory.

作者信息

Asselin Pierre, Soulard Pascale, Madebène Bruno, Esmail Alikhani M, Lewerenz Marius

机构信息

Université Pierre et Marie Curie-Paris 6, CNRS, Laboratoire Dynamique, Interactions et Réactivité, UMR 7075, Case 49, Place Jussieu, 75252 Cedex Paris, France.

出版信息

Phys Chem Chem Phys. 2006 Apr 21;8(15):1785-93. doi: 10.1039/b517814b. Epub 2006 Mar 8.

Abstract

The rotationally resolved infrared spectrum of the hydrogen bonded complex H(2)S-HF and of its isotopomer D(2)S-DF in the HF/DF stretching range have been observed in a supersonic jet Fourier-transform infrared (FTIR) experiment and indicate a predissociation lifetime of 130 ps for H(2)S-HF. Complementary spectra taken at a temperature of 190 K in a cell without resolved rotational structure indicate the presence of strong anharmonic couplings between low frequency intermolecular modes and the HF donor stretch mode previously observed in other complexes with heavier acceptor molecules without rotational fine structure. The anharmonic analysis of the hot band progressions and of the rotational data confirm the coupling mechanism. The coupling constants and the absolute frequency of the hydrogen bonded stretch mode are in excellent agreement with theoretical predictions based on adiabatic variational calculations on potential surfaces computed at MP2 and CCSD(T) level. Complementary calculations with a perturbational approach further confirm the coupling model.

摘要

在超音速喷射傅里叶变换红外(FTIR)实验中,观测到了氢键复合物H₂S-HF及其同位素变体D₂S-DF在HF/DF伸缩范围内的转动分辨红外光谱,结果表明H₂S-HF的预解离寿命为130皮秒。在无转动分辨结构的样品池中于190 K温度下采集的补充光谱表明,低频分子间模式与先前在其他具有较重受体分子且无转动精细结构的复合物中观测到的HF供体伸缩模式之间存在强非谐耦合。对热带跃迁和转动数据的非谐分析证实了耦合机制。氢键伸缩模式的耦合常数和绝对频率与基于在MP2和CCSD(T)水平计算的势能面进行的绝热变分计算的理论预测高度吻合。采用微扰方法进行的补充计算进一步证实了耦合模型。

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