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氢键作用的三氟丙醇二元体系的转动光谱:在喷射膨胀中的构象多样性、偏好性和丰度。

Rotational spectroscopy of hydrogen-bonded binary trifluoro-propanol conformers: conformational diversity, preference and abundances in a jet expansion.

机构信息

Chemistry Department, The University of Alberta, Edmonton, Alberta, T6G 2G2, Canada.

出版信息

Phys Chem Chem Phys. 2023 Jun 21;25(24):16264-16272. doi: 10.1039/d3cp01035j.

Abstract

The rich conformational landscape including the associated conformational conversion paths of the hydrogen-bonded binary 3,3,3-trifluoropropanol (TFP) aggregate was explored using chirped pulse Fourier transform microwave spectroscopy and computational chemistry. To appropriately identify the binary TFP conformers responsible for the five sets of candidate rotational transitions assigned, we established a set of important conformational assignment criteria. These include an extensive conformational search, good agreement between the experimental and theoretical rotational constants, relative magnitude of the three dipole moment components, and quartic centrifugal distortion constants, and observation and non-observation of the predicted conformers. Extensive conformational searches were carried out using CREST, a conformational search tool, producing hundreds of structural candidates. The CREST candidates were screened using a multitier approach and subsequently the low energy conformers (<25 kJ mol) were optimized at the B3LYP-D3BJ/def2-TZVP level, leading to 62 minima within an energy window of 10 kJ mol. Good agreement with the predicted spectroscopic properties mentioned above allowed us to clearly identify five binary TFP conformers as the molecular carriers. Particularly, a combined kinetic and thermodynamic model was developed, which provides a satisfactory explanation for the observation and non-observation of the low energy conformers predicted. The role of the intra- and intermolecular hydrogen bonding interactions in the stability ordering of the binary conformers is discussed.

摘要

采用啁啾脉冲傅里叶变换微波光谱和计算化学方法研究了包括氢键相互作用的二元 3,3,3-三氟丙醇(TFP)聚集体的丰富构象景观及其相关构象转换途径。为了适当识别负责五个候选转动跃迁分配的二元 TFP 构象体,我们建立了一套重要的构象分配标准。这些标准包括广泛的构象搜索、实验和理论转动常数之间的良好一致性、三个电偶极矩分量的相对大小和四次离心畸变常数以及预测构象体的观察和不观察。使用 CREST(构象搜索工具)进行了广泛的构象搜索,产生了数百个结构候选物。使用多层次方法筛选 CREST 候选物,然后在 B3LYP-D3BJ/def2-TZVP 水平上对低能构象体(<25 kJ mol)进行优化,在 10 kJ mol 的能量窗口内得到 62 个最小值。与上述预测的光谱性质的良好一致性使我们能够清楚地识别出五个二元 TFP 构象体作为分子载体。特别地,开发了一个组合的动力学和热力学模型,该模型对预测的低能构象体的观察和不观察提供了令人满意的解释。讨论了分子内和分子间氢键相互作用在二元构象体稳定性顺序中的作用。

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