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Multicomponent Pyrazole Synthesis from Alkynes, Nitriles, and Titanium Imido Complexes via Oxidatively Induced N-N Bond Coupling

机译:通过氧化诱导的N-N键耦合从炔烃,腈和钛亚氨基配合物合成多组分吡唑

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摘要

Pyrazoles are an important class of heterocycles found in a wide range of bioactive compounds and pharmaceuticals. Pyrazole synthesis often requires hydrazine or related reagents where an intact N—N bond is conservatively installed into a pyrazole precursor fragment. Herein, we report the multicomponent oxidative coupling of alkynes, nitriles, and Ti imido complexes for the synthesis of multisubstituted pyrazoles. This modular method avoids potentially hazardous reagents like hydrazine, instead forming the N—N bond in the final step via oxidation-induced coupling on Ti. The mechanism of this transformation has been studied in-depth through stoichiometric reactions of the key diazatitanacyclohexadiene intermediate, which can be accessed via multicomponent coupling of Ti imidos with nitriles and alkynes, ring opening of 2-imino-2H-azirines, or direct metalation of 4-azadiene-l-amine derivatives. The critical transformation in this reaction is the 2-electron oxidation-induced N—N coupling on Ti. This is a rare example of formal N— N coupling on a metal center, which likely occurs through an electrocyclic mechanism analogous to a Nazarov cyclization. Conveniently, these 2-electron-oxidized diazatitanacyclohexadiene intermediates can be accessed via disproportionation of the 1-electron-oxidized species, which allows utilization of weak oxidants such as TEMPO
机译:吡唑是在多种生物活性化合物和药物中发现的重要一类杂环。吡唑合成通常需要肼或相关试剂,其中完整的NN键保守地安装在吡唑前体片段中。在此,我们报道了炔烃,腈和钛亚氨基配合物的多组分氧化偶联,用于合成多取代的吡唑。这种模块化方法避免了诸如肼之类的潜在危险试剂,而是在最后一步中通过在Ti上进行氧化诱导的偶联形成N-N键。已通过关键的重氮杂双环己二烯中间体的化学计量反应深入研究了这种转变的机理,该过程可通过Ti亚氨基与腈和炔的多组分偶联,2-亚氨基2H-叠氮基的开环或直接金属化来实现。 4-氮二烯-1-胺衍生物。该反应中的关键转变是Ti上的2电子氧化诱导的NN偶联。这是金属中心上正式的NN偶联的罕见例子,它很可能是通过类似于Nazarov环化的电循环机理发生的。方便地,这些2-电子氧化的二氮杂双环己二烯中间体可以通过1-电子氧化的种类的歧化来获得,从而可以利用TEMPO等弱氧化剂

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  • 来源
    《Journal of the American Chemical Society》 |2020年第9期|4390-4399|共10页
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  • 作者单位

    Department of Chemistry University of Minnesota—Twin Cities Minneapolis Minnesota 55455 United States;

  • 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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