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Palladium-Catalyzed Allyl Cross-Coupling Reactions with In Situ Generated Organoindium Reagents

机译:钯催化的烯丙基交叉偶联反应与原位生成的有机铟试剂

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摘要

Inter- and intramolecular palladium-catalyzed allyl cross-coupling reactions, using allylindium generated in situ from allyl halides and indium, is demonstrated. Allylindium compounds may be effective nucleophilic coupling partners in palladium-catalyzed cross-coupling reactions. A variety of allyl halides, such as allyl iodide, allyl bromide, crotyl bromide, prenyl bromide, geranyl bromide, and 3-bromocyclohexene afforded the allylic cross-coupling products in good to excellent yields. Stereochemistry of the double bond is retained in the allylic cross-coupling reactions. Electrophilic cross-coupling partners, such as aryl and vinyl halides, dibromoolefin, alkynyl iodide, and aryl and vinyl triflates participate in these reactions. The presence of various substituents, such as n-butyl, ketal, acetyl, ethoxycarbonyl, nitrile, N-phenylamido, nitro, and chloride groups on the aromatic ring of electrophilic coupling partners showed little effect on the efficiency of the reactions. The present conditions work equally well for not only intermolecular but also intramolecular palladium-catalyzed cross-coupling reactions. These methods provide an efficient synthetic method for the introduction of an allyl group, which can be easily further functionalized to afford an sp~(2)-and sp-hybridized carbon. The present method complements existing synthetic methods as a result of advantageous features such as easy preparation and handling, thermal stability, high reactivity and selectivity, operational simplicity, and low toxicity of allylindium reagents.
机译:已证明使用由烯丙基卤化物和铟原位生成的烯丙基可以进行分子间和分子内钯催化的烯丙基交叉偶联反应。在钯催化的交叉偶联反应中,烯丙基化合物可能是有效的亲核偶联伴侣。各种烯丙基卤,例如烯丙基碘,烯丙基溴,巴豆基溴,异戊烯基溴,香叶基溴和3-溴环己烯,均以优异的产率提供了烯丙基交叉偶联产物。双键的立体化学保留在烯丙基的交叉偶联反应中。亲电交叉偶联伙伴,例如芳基和乙烯基卤化物,二溴烯烃,炔基碘化物以及芳基和乙烯基三氟甲磺酸酯参与这些反应。亲电子偶合体芳环上各种取代基的存在,例如正丁基,缩酮,乙酰基,乙氧羰基,腈,N-苯基酰胺基,硝基和氯基,对反应效率的影响很小。目前的条件不仅对于分子间而且对于分子内钯催化的交叉偶联反应同样有效。这些方法提供了引入烯丙基的有效合成方法,该烯丙基可以容易地进一步官能化以提供sp_(2)-和sp-杂化碳。由于有利的特征,例如易于制备和处理,热稳定性,高反应性和选择性,操作简单以及烯丙基dium试剂的低毒性,本方法对现有的合成方法进行了补充。

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