Kjaersgaard Alexander, Vogt Emil, Hansen Anne S, Kjaergaard Henrik G
Department of Chemistry, University of Copenhagen, Universitetsparken 5, DK-2100Copenhagen, Denmark.
Department of Chemistry, University of Pennsylvania, Philadelphia, Pennsylvania 19104-6323, United States.
J Phys Chem A. 2020 Sep 3;124(35):7113-7122. doi: 10.1021/acs.jpca.0c07399. Epub 2020 Aug 26.
We have detected the HO·DMA and HO·TMA (DMA, dimethylamine; TMA, trimethylamine) bimolecular complexes at room temperature in the gas phase using Fourier transform infrared spectroscopy. For both complexes, five vibrational bands associated with the HO molecule are observed and assigned. Within a reduced dimensional local mode framework, we set up a six-dimensional model, including the three HO vibrational modes and three of the six intermolecular modes, all described with internal curvilinear coordinates. The single points on the potential energy surface and Eckart corrected dipole moment surface are calculated with the CCSD(T)-F12a/cc-pVDZ-F12 method. Combining the measured and calculated transition intensities, we determine the Gibbs energy of complex formation of both complexes from each of the observed bands. The multiple determinations give similar Gibbs energies, for each complex, and increase the confidence in the combined experimental and theoretical approach, and improve the accuracy of the determined Gibbs energies. The average Gibbs energies of complex formation are found to be 5.0 ± 0.2 and 3.8 ± 0.2 kJ/mol for HO·DMA and HO·TMA, respectively. In addition to the experimental uncertainty, there is a potential error on the calculated intensities corresponding to 0.4 kJ/mol. However, the small spread among the four determinations suggests that this error is even less. The Gibbs energies of these complexes serve as accurate benchmarks for theoretical approaches that are prevalent in hydrogen bonding and nucleation studies.
我们利用傅里叶变换红外光谱在室温下的气相中检测到了HO·DMA和HO·TMA(DMA,二甲胺;TMA,三甲胺)双分子复合物。对于这两种复合物,均观察并归属了与HO分子相关的五条振动带。在降维局部模式框架内,我们建立了一个六维模型,包括三个HO振动模式和六个分子间模式中的三个,所有这些都用内禀曲线坐标来描述。用CCSD(T)-F12a/cc-pVDZ-F12方法计算了势能面和Eckart校正偶极矩面上的单点。结合测量和计算得到的跃迁强度,我们从每个观察到的谱带确定了这两种复合物形成复合物的吉布斯自由能。多次测定得到了每种复合物相似的吉布斯自由能,增加了对实验和理论相结合方法的信心,并提高了所确定吉布斯自由能的准确性。发现HO·DMA和HO·TMA形成复合物的平均吉布斯自由能分别为5.0±0.2和3.8±0.2 kJ/mol。除了实验不确定性外,计算强度还存在对应于0.4 kJ/mol的潜在误差。然而,四次测定之间的小差异表明这个误差甚至更小。这些复合物的吉布斯自由能为氢键和成核研究中普遍采用的理论方法提供了准确的基准。