Department of Life Sciences, University of Science and Technology of Hanoi, Vietnam Academy of Science and Technology, 18 Hoang Quoc Viet, Hanoi, Vietnam.
Université Paris Cité and Univ Paris Est Creteil, CNRS, LISA, 75013 Paris, France.
Molecules. 2022 Apr 20;27(9):2639. doi: 10.3390/molecules27092639.
The gas-phase structures of the fruit ester methyl hexanoate, CH-O-(C=O)-CH, have been determined using a combination of molecular jet Fourier-transform microwave spectroscopy and quantum chemistry. The microwave spectrum was measured in the frequency range of 3 to 23 GHz. Two conformers were assigned, one with C symmetry and the other with C symmetry where the γ-carbon atom of the hexyl chain is in a orientation in relation to the carbonyl bond. Splittings of all rotational lines into doublets were observed due to internal rotation of the methoxy methyl group -O, from which torsional barriers of 417 cm and 415 cm, respectively, could be deduced. Rotational constants obtained from geometry optimizations at various levels of theory were compared to the experimental values, confirming the soft degree of freedom of the (C=O)-C bond observed for the C conformer of shorter methyl alkynoates like methyl butyrate and methyl valerate. Comparison of the barriers to methyl internal rotation of methyl hexanoate to those of other CH-O-(C=O)- molecules leads to the conclusion that though the barrier height is relatively constant at about 420 cm, it decreases in molecules with longer .
使用分子喷射傅里叶变换微波光谱学和量子化学相结合的方法,确定了水果酯甲基己酸酯(CH-O-(C=O)-CH)的气相结构。微波光谱在 3 至 23 GHz 的频率范围内进行了测量。分配了两种构象体,一种具有 C 对称,另一种具有 C 对称,其中己基链的γ碳原子相对于羰基键呈取向。由于甲氧基甲基基团-O 的内部旋转,所有旋转线都观察到分裂为双峰,从中可以推断出扭转势垒分别为 417 cm 和 415 cm。从不同理论水平的几何优化中获得的旋转常数与实验值进行了比较,证实了(C=O)-C 键的柔顺自由度,对于像甲基丁酸酯和甲基戊酸酯这样的较短甲基炔酸酯的 C 构象体观察到了这种柔顺自由度。将甲基己酸酯的甲基内部旋转的势垒与其他 CH-O-(C=O)-分子的势垒进行比较,得出结论,尽管势垒高度在大约 420 cm 处相对恒定,但在具有较长的分子中会降低。