Departamento de Química Física y Química Inorgánica, Facultad de Ciencias - I.U. CINQUIMA, Universidad de Valladolid, Paseo de Belén 7, 47011 Valladolid, Spain.
Departamento de Electrónica, ETSIT, Universidad de Valladolid, Paseo de Belén 15, 47011 Valladolid, Spain.
Phys Chem Chem Phys. 2022 Apr 13;24(15):8999-9006. doi: 10.1039/d2cp00479h.
Furfuryl alcohol and thenyl alcohol contain a labile torsional chiral center, producing transiently chiral enantiomers interconverting in the nanosecond time-scale. We explored chiral molecular recognition using the weakly-bound intermolecular dimers of both alcohols, freezing stereomutation. Supersonic jet broadband microwave spectroscopy revealed homo and heterochiral diastereoisomers for each alcohol dimer and the structural characteristics of the clusters. All dimers are primarily stabilized by a moderately intense O-H⋯O hydrogen bond, but differ in the secondary interactions, which introduce additional hydrogen bonds either to the ring oxygen in furfuryl alcohol or to the π ring system in thenyl alcohol. Density-functional calculations (B2PLYP-D3(BJ)/def2-TZVP) show no clear preferences for a particular stereochemistry in the dimers, with relative energies of the order 1-2 kJ mol. The study suggests opportunities for the investigation of chiral recognition in molecules with torsional barriers in between transient and permanent interconversion regimes.
糠醇和四氢糠醇含有一个不稳定的扭转手性中心,在纳秒时间尺度内产生瞬态手性对映异构体相互转化。我们使用两种醇的弱结合的分子间二聚体探索了手性分子识别,冻结了立体异构变化。超声射流宽带微波光谱揭示了每种醇二聚体的同手性和异手性非对映异构体以及聚集体的结构特征。所有二聚体主要通过中等强度的 O-H⋯O 氢键稳定,但在次级相互作用上存在差异,这些相互作用要么在糠醇的环氧原子上引入额外的氢键,要么在四氢糠醇的π环系统上引入额外的氢键。密度泛函计算(B2PLYP-D3(BJ)/def2-TZVP)表明,二聚体中没有特定立体化学的明显偏好,相对能量约为 1-2 kJ mol。该研究为研究在瞬态和永久相互转化之间的扭转势垒的分子中的手性识别提供了机会。