Laboratoire de Physique des Lasers, Atomes et Molécules, Université de Lille I , 59655 Villeneuve d'Ascq Cedex, France.
J Phys Chem A. 2012 Sep 13;116(36):9116-22. doi: 10.1021/jp305504x. Epub 2012 Aug 28.
Rotational constants were determined for (18)O-substituted isotopologues of the lower energy conformer of glycidol, which has an intramolecular inner hydrogen bond from the hydroxyl group to the oxirane ring oxygen. Rotational constants were previously determined for the (13)C and the OD species. These rotational constants have been corrected with the rovibrational constants calculated from an ab initio cubic force field. The derived semiexperimental equilibrium rotational constants have been supplemented by carefully chosen structural parameters, including those for hydrogen atoms, from medium level ab initio calculations. The combined data have been used in a weighted least-squares fit to determine an equilibrium structure for the glycidol H-bond inner conformer. This work shows that the mixed estimation method allows us to determine a complete and reliable equilibrium structure for large molecules, even when the rotational constants of a number of isotopologues are unavailable.
为具有分子内氢键的缩水甘油较低能构象的(18)O 取代同位素物,测定了转动常数,其中羟基与环氧化物环氧之间形成氢键。先前已经测定了(13)C 和 OD 物种的转动常数。用从头算立方力场计算的振转常数对这些转动常数进行了修正。从中等水平的从头算计算中,选择了仔细的结构参数,包括氢原子的参数,对推导出的半实验平衡转动常数进行了补充。将组合数据用于加权最小二乘拟合,以确定缩水甘油氢键内构象的平衡结构。这项工作表明,混合估计方法使我们能够确定大分子的完整和可靠的平衡结构,即使某些同位素的转动常数不可用。