Bakó Imre, Radnai Tamás, Bellisent Funel Marie Claire
Chemical Research Center, Hungarian Academy of Sciences, P.O. Box 17, H-1525 Budapest, Hungary.
J Chem Phys. 2004 Dec 22;121(24):12472-80. doi: 10.1063/1.1814637.
The molecular conformation and intermolecular H bonding in liquid 2,2,2 trifluoroethanol (TFE) have been studied by neutron diffraction with hydrogen/deuterium isotopic substitution at room temperature. For comparison, conformations of molecules and their dimers in the gas phase have also been calculated, based on the density functional theory. Energies, geometry, and vibrational frequencies of dimers were analyzed. Diffraction data analyzed by the "Monte Carlo determination of g(r)" (MCGR) method resulted in a molecular structure in agreement with the findings from gas phase electron diffraction experiments and density functional calculations. The intermolecular structure functions were compared to the same functions obtained from a molecular dynamics simulation. All of the composite radial distribution functions are in good agreement with the simulation results. According to our calculation the hydrogen-bonded aggregation size is smaller in pure liquid TFE than in pure liquid ethanol.
通过在室温下进行氢/氘同位素取代的中子衍射研究了液态2,2,2-三氟乙醇(TFE)中的分子构象和分子间氢键。作为比较,还基于密度泛函理论计算了气相中分子及其二聚体的构象。分析了二聚体的能量、几何结构和振动频率。通过“蒙特卡罗确定g(r)”(MCGR)方法分析的衍射数据得到的分子结构与气相电子衍射实验和密度泛函计算的结果一致。将分子间结构函数与分子动力学模拟得到的相同函数进行了比较。所有复合径向分布函数与模拟结果都非常吻合。根据我们的计算,纯液态TFE中氢键聚集尺寸比纯液态乙醇中的小。