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空间和电子相互作用在5-乙氧基-3-对-(S)-甲苯亚磺酰基呋喃-2(5H)-酮与重氮烷烃的不对称1,3-偶极反应立体控制中的作用:理论计算与实验证据

The role of steric and electronic interactions in the stereocontrol of the asymmetric 1,3-dipolar reactions of 5-ethoxy-3-p-(S)-tolylsulfinylfuran-2(5H)-ones with diazoalkanes: theoretical calculations and experimental evidences.

作者信息

García Ruano José L, Fraile Alberto, González Gemma, Martín M Rosario, Clemente Fernando R, Gordillo Ruth

机构信息

Departamento de Química Orgánica, Universidad Autónoma, Cantoblanco, 28049-Madrid, Spain.

出版信息

J Org Chem. 2003 Aug 22;68(17):6522-34. doi: 10.1021/jo0345603.

Abstract

The addition of diazomethane and diazoethane to (5S,SS)- and (5R,SS)-5-ethoxy-3-p-tolylsulfinylfuran-2(5H)-ones (1a and 1b) and their 4-methylderivatives (2a and 2b) proceeded in almost quantitative yields and complete regioselectivity. The observed pi-facial selectivity is determined by the configurations at both C-5 and the sulfinyl group, the later being the most important. The syn adducts were almost exclusively obtained from 1a and 2a in apolar solvents but the pi-facial selectivity was strongly decreased in more polar solvents. On the other hand, the major adducts from 1b and 2b were the anti ones and such predominance was slightly increased with solvent polarity. The exo-selectivity was complete in all the cases except for the anti approach to compounds 2a (in polar solvents) and 2b. The role of the sulfinyl group in this behavior was inferred by comparison of these results with those obtained in reactions of diazoalkanes with 5-methoxyfuran-2(5H)-one (3). Steric interactions seem to be the main ones responsible for the observed exo selectivity of reactions with diazoethane, but electronic factors, which can be modulated by the solvent, are also significant in the pi-facial selectivity control. DFT computational methods are able to correctly predict the reactivity, regioselectivity, and pi-facial selectivity exhibited by 5-alkoxyfuranones as well as their changes with the solvent polarity. A C-H.O hydrogen bond, involving the oxygen atom of the 5-alkoxy group at dipolarophiles and the endo-hydrogen atom at dipoles, seems to play a key role in the electronic interactions influencing the stereochemical course of these reactions.

摘要

向(5S,SS)-和(5R,SS)-5-乙氧基-3-对甲苯亚磺酰基呋喃-2(5H)-酮(1a和1b)及其4-甲基衍生物(2a和2b)中加入重氮甲烷和重氮乙烷,反应几乎定量产率且具有完全的区域选择性。观察到的π-面选择性由C-5和亚磺酰基的构型决定,后者最为重要。在非极性溶剂中,顺式加合物几乎仅从1a和2a得到,但在极性更大的溶剂中,π-面选择性大大降低。另一方面,1b和2b的主要加合物是反式的,且随着溶剂极性的增加,这种优势略有增加。除了对化合物2a(在极性溶剂中)和2b的反式加成外,在所有情况下外型选择性都是完全的。通过将这些结果与重氮烷与5-甲氧基呋喃-2(5H)-酮(3)反应得到的结果进行比较,推断出亚磺酰基在这种行为中的作用。空间相互作用似乎是与重氮乙烷反应中观察到的外型选择性的主要原因,但可由溶剂调节的电子因素在π-面选择性控制中也很重要。密度泛函理论计算方法能够正确预测5-烷氧基呋喃酮表现出的反应性、区域选择性和π-面选择性以及它们随溶剂极性的变化。一种C-H.O氢键,涉及亲偶极体上5-烷氧基的氧原子和偶极体上的内氢原子,似乎在影响这些反应立体化学过程的电子相互作用中起关键作用。

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