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首页> 外文期刊>Journal of the American Chemical Society >Structure Dependence in Asymmetric Deprotonative Fluorination and Fluorocyclization Reactions of Allylamine Derivatives with Linked Binaphthyl Dicarboxylate Phase-Transfer Catalyst
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Structure Dependence in Asymmetric Deprotonative Fluorination and Fluorocyclization Reactions of Allylamine Derivatives with Linked Binaphthyl Dicarboxylate Phase-Transfer Catalyst

机译:用连接的二羧酸二羧酸二羧酸相转移催化剂的烯丙胺衍生物的不对称脱质氟化和含氟核和化反应的结构依赖性

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摘要

The asymmetric fluorofunctionalization of γ,γ-disubstituted allylamine derivatives (e.g., 3, 7, and 8) was investigated using our dianionic phase-transfer catalyst. Depending on the substituents on the alkene moiety, the reaction afforded chiral allylic fluorides and fluorinated dihydrooxazines in a highly enantioselective manner (up to 99% ee). The absolute stereochemistry of these products was found to be opposite to that in our previously reported fluorocyclization of j'-monosubstituted allylic amides (e.g., 13 and 14). To probe this interesting phenomenon, we investigated the influence of the substitution pattern of the alkene moiety on the reaction by means of NMR experiments and kinetic studies. The rate laws of the deprotonative fluorination and the fluorocyclization of γ,γ-disubstituted substrates were ν = κ[cat]~(0.6), while that of the fluorocyclization of j'-monosubstituted substrates was ν = κ[substrate][cat]~(0.4). An exponent of less than 1 suggests the involvement of an aggregated state of the catalyst ion pair in the catalytic cycle. Interestingly, a positive nonlinear effect was observed in the reactions of the γ,γ-disubstituted substrates, while a negative nonlinear effect was observed in the case of the γ-monosubstituted substrates. Thus, the reaction pathway depends on the presence or absence of an alkyl substituent at the γ position of the substrates, and on the basis of our mechanistic studies we propose that the active catalytic species for γ,γ-disubstituted substrates is a catalyst ion pair aggregate, whereas that for γ-monosubstituted substrates is the more active monomeric catalyst ion pair species, even though its concentration would be low.
机译:使用我们的Dianionic相转移催化剂研究了γ,γ-二取代的烯丙胺衍生物(例如,3,7和8)的不对称氟官能化。取决于烯烃部分上的取代基,该反应得到手性烯丙基氟化物和氟化二氢恶唑,以高度致密的方式(高达99%EE)。发现这些产品的绝对立体化学与我们先前报道的J'-单取代的烯丙基酰胺(例如,13和14)的含氟环化相反。为了探测这种有趣的现象,我们研究了通过NMR实验和动力学研究通过NMR实验和动力学研究对烯烃部分的替代模式对反应的影响。 γ,γ-二取代基材的脱质氟化的速率规律和γ-二取代的底物的含氟核,而J'-单取代基材的氟环化的含氟键合率为ν=κ[豆] 〜(0.4)。小于1的指数表明催化剂离子对在催化循环中的聚集状态的介断。有趣的是,在γ,γ-二取代的基材的反应中观察到阳性非线性效应,而在γ-单取代基材的情况下观察到负非线性效果。因此,反应途径取决于基材的γ位置处的烷基取代基的存在或不存在,并且在我们的机制研究的基础上,我们提出了γ,γ-二取代基材的活性催化物质是催化剂离子对。聚集体,而对于γ-单取代的底物是更活泼的单体催化剂离子对物种,即使其浓度也会很低。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第40期|16599-16609|共11页
  • 作者单位

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

    School of Pharmaceutical Sciences University of Shizuoka Shizuoka 422-8526 Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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