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Raising the pKa Limit of Soft Nucleophiles in Palladium-Catalyzed Allylic Substitutions. Application of Diarylmethane Pronucleophiles

机译:在钯催化的烯丙基取代基中提高软亲核试剂的pKa限。二芳基甲烷亲核试剂的应用

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摘要

The Tsuji-Trost allylic substitution reaction provides a useful and efficient approach to construct C-C bonds between sp3-hybridized carbons. The widely accepted paradigm for classifying the mode of attack of nucleophiles on palladium π-allyl intermediates in the Tsuji-Trost reaction is based on the pKa of the pronucleophile: (1) stabilized or “soft” carbon nucleophiles and heteroatom nucleophiles (e.g., pronucleophiles with pKa’s < 25), and (2) unstabilized or “hard” nucleophiles (those from pronucleophiles with pKa’s > 25). One of the keys to the continuing development of allylic substitution processes remains broadening the scope of “soft” nucleophiles. Herein we report a general method for the room temperature Pd-catalyzed allylic substitution with diarylmethane derivatives (pKa’s up to 32). The synthetic significance of the method is that it provides a rapid access to products containing allylated diarylmethyl motifs. The method is general for a wide range of nucleophiles derived from diarylmethanes and heterocyclic derivatives. A procedure for the Pd-catalyzed allylic substitutions to afford diallylation products with quaternary centers is also described. With triarylmethanes and, alkylated diarylmethanes the corresponding allylated products are isolated. We anticipate that the described method will be a valuable complement to the existing arsenal of nucleophiles in Pd-catalyzed allylic substitutions. Mechanistic studies show that the nucleophile derived from diphenylmethane undergoes external attack on π-allyl palladium species under our reaction conditions. This unexpected observation indicates that diarylmethane derivatives behave as “soft” or stabilized nucleophiles. The results of this study indicate that the cutoff between “soft” and “hard” nucleophiles should be raised from a pronucleophile pKa of 25 to at least 32.
机译:Tsuji-Trost烯丙基取代反应为在sp 3 杂化碳之间构建C-C键提供了有用而有效的方法。在Tsuji-Trost反应中,对亲核试剂对钯π-烯丙基中间体的进攻方式进行分类的广泛接受的范例基于亲核试剂的pKa:(1)稳定或“软”的碳亲核试剂和杂原子亲核试剂(例如,亲核试剂) pKa <25),以及(2)不稳定或“硬”亲核试剂(来自pKa> 25的前亲核试剂)。烯丙基取代过程不断发展的关键之一仍然是扩大“软”亲核试剂的范围。在此,我们报告了一种室温下Pd催化的用二芳基甲烷衍生物(pKa最高为32)取代的烯丙基取代的一般方法。该方法的综合意义在于,它可以快速获取含有烯丙基化二芳基甲基基序的产品。该方法通常适用于衍生自二芳基甲烷和杂环衍生物的多种亲核试剂。还描述了Pd催化的烯丙基取代以提供具有四元中心的二烯丙基化产物的方法。用三芳基甲烷和烷基化的二芳基甲烷分离相应的烯丙基化产物。我们预期,所描述的方法将是对Pd催化的烯丙基取代中现有亲核试剂库的有价值的补充。机理研究表明,在我们的反应条件下,衍生自二苯甲烷的亲核试剂对π-烯丙基钯物种进行了外部攻击。这种出乎意料的观察表明,二芳基甲烷衍生物表现为“软”或稳定的亲核试剂。这项研究的结果表明,“软”和“硬”亲核试剂之间的界限应从前亲核试剂pKa从25提高到至少32。

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