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首页> 外文期刊>Journal of Molecular Structure >Polarization IR spectra of the hydrogen bond in 1-naphthylacetic and 2-naphthylacetic acid crystals: H/D isotopic effects. Temperature and polarization effects
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Polarization IR spectra of the hydrogen bond in 1-naphthylacetic and 2-naphthylacetic acid crystals: H/D isotopic effects. Temperature and polarization effects

机译:1-萘乙酸和2-萘乙酸酸晶体中氢键的极化红外光谱:H / D同位素效应。温度和极化效应

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This paper deals with experimental studies and with the quantitative interpretation of the polarized IR crystalline spectra of 1-naphthylacetic and 2-naphthylacetic acid. The spectra were measured in the v(O-H) and in the v(O-D) band frequency ranges, at the temperatures of 298 and 77 K. The intensity distribution in the bands was quantitatively reproduced on the basis of the strong-coupling model, when assuming that the isolated (COOH)(2) and (COOD)(2) cycles were the source of the spectral properties of the crystals. Such approach appeared to be sufficient for explaining most of the isotopic and the temperature effects in the spectra. A vibronic mechanism, promoting the symmetry forbidden transition in the IR, for the totally symmetric proton stretching vibrations in centrosymmetric hydrogen bond dimers, was found to be of a considerably minor importance, when compared with analogous spectral properties of arylcarboxylic acid crystals. Also no Fermi resonance impact on the v(O-H) band shape was identified in the 1-naphthylacetic and 2-naphthylacetic acid crystal spectra. These effects were ascribed to weakening of electronic couplings between the hydrogen bonds and the phenyl rings, due to the separation of these molecular fragments by methylene groups in 1-naphthylacetic and 2-naphthylacetic acid molecules. (C) 2004 Elsevier B.V. All rights reserved.
机译:本文涉及实验研究和对1-萘乙酸和2-萘乙酸的偏振红外晶体光谱的定量解释。在298和77 K的温度下,在v(OH)和v(OD)频带频率范围内测量光谱。在强耦合模型的基础上,定量地再现了频带中的强度分布。假设孤立的(COOH)(2)和(COOD)(2)循环是晶体光谱特性的来源。这种方法似乎足以解释光谱中的大多数同位素和温度效应。与芳基羧酸晶体的类似光谱特性相比,发现在中心对称氢键二聚体中完全对称的质子拉伸振动中,促进红外中对称的禁态跃迁的振动机理具有相当小的重要性。在1-萘乙酸和2-萘乙酸的晶体光谱中也没有发现费米共振对v(O-H)谱带形状的影响。这些作用归因于氢键和苯环之间电子耦合的减弱,这是由于这些分子片段被1-萘乙酸和2-萘乙酸分子中的亚甲基隔开。 (C)2004 Elsevier B.V.保留所有权利。

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