Lane Joseph R, Schrøder Sidsel D, Saunders Graham C, Kjaergaard Henrik G
School of Science, University of Waikato , Private Bag 3105, Hamilton 3240, New Zealand.
Department of Chemistry, University of Copenhagen , Universitetsparken 5, DK-2100 Copenhagen, Denmark.
J Phys Chem A. 2016 Aug 18;120(32):6371-8. doi: 10.1021/acs.jpca.6b05898. Epub 2016 Aug 3.
The qualifying features of a hydrogen bond can be contentious, particularly where the hydrogen bond is due to a constrained intramolecular interaction. Indeed there is disagreement within the literature whether it is even possible for an intramolecular hydrogen bond to form between functional groups on adjacent carbon atoms. This work considers the nature of the intramolecular interaction between the OH (donor) and NH2 (acceptor) groups of 2-aminoethanol, with varying substitution at the OH carbon. Gas-phase vibrational spectra of 1-amino-2-methyl-2-propanol (BMAE) and 1-amino-2,2-bis(trifluoromethyl)-2-ethanol (BFMAE) were recorded using Fourier transform infrared spectroscopy and compared to literature spectra of 2-aminoethanol (AE). Based on the experimental OH-stretching frequencies, the strength of the intramolecular hydrogen bond appears to increase from AE < BMAE ≪ BFMAE. Non-covalent interaction analysis shows evidence of an intramolecular hydrogen bond in all three molecules, with the order of the strength of interaction matching that of experiment. The experimental OH-stretching vibrational frequencies were found to correlate well with the calculated kinetic energy density, suggesting that this approach can be used to estimate the strength of an intramolecular hydrogen bond.
氢键的限定特征可能存在争议,特别是当氢键是由于受限的分子内相互作用引起时。实际上,文献中对于相邻碳原子上的官能团之间是否甚至有可能形成分子内氢键存在分歧。这项工作考虑了2-氨基乙醇的OH(供体)和NH2(受体)基团之间分子内相互作用的性质,其中OH碳上具有不同的取代基。使用傅里叶变换红外光谱记录了1-氨基-2-甲基-2-丙醇(BMAE)和1-氨基-2,2-双(三氟甲基)-2-乙醇(BFMAE)的气相振动光谱,并与2-氨基乙醇(AE)的文献光谱进行了比较。基于实验测得的OH伸缩频率,分子内氢键的强度似乎按AE < BMAE ≪ BFMAE的顺序增加。非共价相互作用分析表明所有三个分子中都存在分子内氢键,相互作用强度的顺序与实验结果相符。发现实验测得的OH伸缩振动频率与计算得到的动能密度具有良好的相关性,这表明该方法可用于估计分子内氢键的强度。