Takahashi Osamu, Yamasaki Katsuyoshi, Kohno Yuji, Ohtaki Ryuta, Ueda Kazuyoshi, Suezawa Hiroko, Umezawa Yoji, Nishio Motohiro
Department of Chemistry, Graduate School of Science, Hiroshima University, Kagamiyama, Higashi-Hiroshima 739-8526, Japan.
Carbohydr Res. 2007 Jul 2;342(9):1202-9. doi: 10.1016/j.carres.2007.02.032. Epub 2007 Mar 2.
Ab initio MO calculations were carried out at the MP2/6-311++G(d,p) level to investigate the conformational energy of 2-substituted oxanes and 1,3-dioxanes. It has been found that the Gibbs free energies of the axial conformers are smaller than those of the corresponding equatorial conformers in every case when the 2-substituent Z is electron withdrawing (OCH(3), F, Cl, Br). The difference in Gibbs energy between the equatorial and axial conformers DeltaG(eq-ax) increases from Z=OCH(3) to F, Cl, and then to Br. In the axial conformers, the interatomic distance between Z and the axial C-H, separated by four covalent bonds, has been found to be appreciably shorter than the van der Waals distance, suggesting the importance of the five-membered CH/n (CH/O or CH/halogen) hydrogen bond in stabilizing these conformations. Natural bonding orbital (NBO) charges of the relevant atoms have been shown to be different between the two conformers: more positive for H and more negative for C in the axial conformers than in the corresponding equatorial conformers. In view of the above findings, we suggest that the CH/n hydrogen bond plays an important role in stabilizing the axial conformation in 2-substituted oxanes and 1,3-dioxanes, and by implication, in the anomeric effect in carbohydrate chemistry.
采用从头算分子轨道(MO)方法,在MP2/6 - 311++G(d,p)水平上对2 - 取代的四氢吡喃和1,3 - 二氧六环的构象能进行了研究。结果发现,当2 - 取代基Z为吸电子基团(OCH(3)、F、Cl、Br)时,在每种情况下轴向构象体的吉布斯自由能均小于相应的赤道构象体。赤道构象体和轴向构象体之间的吉布斯能量差ΔG(eq - ax)从Z = OCH(3)到F、Cl,再到Br逐渐增大。在轴向构象体中,发现Z与轴向C - H之间相隔四个共价键的原子间距离明显短于范德华距离,这表明五元CH/n(CH/O或CH/卤素)氢键在稳定这些构象中具有重要作用。已表明两种构象体中相关原子的自然键轨道(NBO)电荷不同:轴向构象体中的H比相应赤道构象体中的H更正,C更负。鉴于上述发现,我们认为CH/n氢键在稳定2 - 取代的四氢吡喃和1,3 - 二氧六环的轴向构象中起着重要作用,并且由此暗示在碳水化合物化学中的端基异构效应中也起重要作用。