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Influence of intramolecular hydrogen bonding on OH-stretching overtone intensities and band positions in peroxyacetic acid

机译:分子内氢键对过氧乙酸中OH拉伸泛音强度和能带位置的影响

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摘要

Vapor phase absorption spectra and integrated band intensities of the OH stretching fundamental as well as first and second overtones (2ν _(OH) and 3ν _(OH)) in peroxyacetic acid (PAA) have been measured using a combination of FT-IR and photoacoustic spectroscopy. In addition, ab initio calculations have been carried out to examine the low energy stable conformers of the molecule. Spectral assignment of the primary features appearing in the region of the 2ν _(OH) and 3ν _(OH) overtone bands are made with the aid of isotopic substitution and anharmonic vibrational frequency calculations carried out at the MP2/aug-cc-pVDZ level. Apart from features associated with the zeroth-order OH stretch, the overtone spectra are dominated by features assigned to combination bands composed of the respective OH stretching overtone and vibrations involving the collective motion of several atoms in the molecule resulting from excitation of the internal hydrogen bonding coordinate. Integrated absorption cross section measurements reveal that internal hydrogen bonding, the strength of which is estimated to be ~20 kJ/mol in PAA, does not result in a enhanced oscillator strength for the OH stretching fundamental of the molecule, as is often expected for hydrogen bonded systems, but does cause a precipitous drop in the oscillator strength of its 2ν _(OH) and 3ν _(OH) overtone bands, reducing them, respectively, by a factor of 165 and 7020 relative to the OH stretching fundamental.
机译:使用FT-IR和FT-IR的组合测量了过氧乙酸(PAA)中OH拉伸基波以及第一和第二个泛音(2ν_(OH)和3ν_(OH))的气相吸收光谱和积分带强度。光声光谱学。另外,已经进行了从头算来检查该分子的低能量稳定构象异构体。借助同位素取代和在MP2 / aug-cc-pVDZ级进行的非谐振动频率计算,对出现在2ν_(OH)和3ν_(OH)泛音带区域中的主要特征进行光谱分配。除了与零阶OH拉伸相关的特征外,泛音谱还被分配给由各个OH拉伸泛音和涉及分子中由内部氢键激发引起的分子中几个原子的集体运动组成的振动的组合带组成的特征所控制。坐标。整合的吸收截面测量结果表明,内部氢键(在PAA中的强度估计为〜20 kJ / mol)不会导致分子的OH拉伸基础的增强的振荡强度,这是氢通常所期望的键合系统,但确实会导致其2ν_(OH)和3ν_(OH)泛音带的振荡器强度急剧下降,相对于OH拉伸基本原理,它们分别减小了165和7020倍。

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