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Bismuth-Mediated Diastereoselective Allylation Reaction of Carbonyl Compounds with Cyclic Allylic Halides or Cinnamyl Halide

机译:羰基化合物与环状烯丙基卤化物或肉桂酰卤的铋介导的非对映选择性烯丙基化反应

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摘要

An efficient diastereoselective allylation of various carbonyl compounds with cyclic allylic halides by using commercially available bismuth powder in the presence of LiI was developed. Among all the metals screened, bismuth was found to be the best mediator for the transformation. The reactions involving various cyclic allylic halides proceeded smoothly at room temperature to produce the desired homoallylic alcohols in good to excellent yields with high diastereoselectivities (99:1 dr). Reversed diastereoselectivity was obtained when carbonyl substrate (e. g., 2-pyridinecarboxaldehyde, glyoxylic acid) containing chelating substituent was used in the allylation reaction. In addition, the reactions involving acyclic (E)-cinnamyl bromide as substrate worked equally well with high diastereocontrol.
机译:开发了通过在Lii存在下使用市售的铋粉的具有环状烯丙基卤化物的各种羰基化合物的有效的非对映选择性烯丙基化。 在所有筛选的金属中,发现铋是转型的最佳介体。 涉及各种环状烯丙基卤化物的反应在室温下平滑地进行,以良好地产生所需的常合产醇,良好的优异产率为高,具有高的非对映选择性(& 99:1 dr)。 在烯丙基化反应中使用含羰基底物(例如,2-吡啶膦酸甲醛,甲氧基酸),获得含有螯合取代基的含有螯合取代基的反转的非对映选择性。 此外,涉及环碳(E)氨基氨基溴化物作为底物的反应与高酸核细胞的高度良好均匀。

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