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首页> 外文期刊>Beilstein journal of organic chemistry. >Stereoselective α-fluoroamide and α-fluoro-γ-lactone synthesis by an asymmetric zwitterionic aza-Claisen rearrangement
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Stereoselective α-fluoroamide and α-fluoro-γ-lactone synthesis by an asymmetric zwitterionic aza-Claisen rearrangement

机译:不对称两性离子氮杂-克莱森重排合成立体选择性α-氟酰胺和α-氟-γ-内酯

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BackgroundAsymmetric introduction of fluorine α-to a carbonyl has become popular recently, largely because the direct fluorination of enolates by asymmetric electrophilic fluorinating reagents has improved, and as a result such compounds are becoming attractive synthons. We have sought an alternative but straightforward asymmetric method to this class of compounds, utilising the zwitterionic aza-Claisen rearrangement by reacting α-fluoroacid chlorides and homochiral N-allylpyrrolidines as starting materials.ResultsTreatment of N-allylmorpholine with 2-fluoropropionyl chloride under Yb(OTf)3 catalysis generated the zwitterionic aza-Claisen rearrangement product in good yield and demonstrated the chemical feasibility of the approach. For the asymmetric reaction, N-allyl-(S)-2-(methoxymethyl)pyrrolidine was treated with either 2-fluoropropionyl chloride or 2-fluorophenylacetic acid chloride under similar conditions and resulted in N-(α-fluoro-γ-vinylamide)pyrrolidine products as homochiral materials in 99% de. These products were readily converted to their corresponding α-fluoro-γ-lactones by iodolactonisation and in good diastereoselectivity.ConclusionMolecules which have fluorine at a stereogeneic centre are finding increasing utility in pharmaceutical, fine chemicals and materials research. The zwitterionic aza-Claisen rearrangement proved to be an effective and competitive complement to asymmetric electrophilic fluorination strategies and provides access to versatile synthetic intermediates with fluorine at the stereogenic centre.
机译:背景技术近来,将氟α-不对称引入羰基中已变得普遍,这主要是因为通过不对称亲电氟化试剂对烯醇化物的直接氟化得到了改善,结果这些化合物正成为有吸引力的合成子。我们已经找到了另一种替代方法,但是该类化合物的一种简单直接的不对称方法是,利用两性离子aza-Claisen重排,使α-氟酰氯与高手性N-allyyryridines反应作为起始原料。结果Yb(2- OTf)3催化以良好的收率产生了两性离子氮杂-克莱森重排产物,并证明了该方法的化学可行性。对于不对称反应,在类似条件下用2-氟丙酰氯或2-氟苯基乙酸酰氯处理N-烯丙基-(S)-2-(甲氧基甲基)吡咯烷,得到N-(α-氟-γ-乙烯基酰胺)。吡咯烷产品为99%de的纯手性材料。这些产物易于通过碘内酯化并具有良好的非对映选择性而转化为相应的α-氟-γ-内酯。结论在立体异构中心具有氟的分子在制药,精细化学品和材料研究中的应用日益广泛。两性离子氮杂-克莱森重排被证明是不对称亲电氟化策略的有效和竞争性补充,并提供了在立体生成中心使用氟的通用合成中间体的途径。

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