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Tuning the Lewis Acidity of Boranes in Frustrated Lewis Pair Chemistry: Implications for the Hydrogenation of Electron-Poor Alkenes

机译:在令人沮丧的刘易斯对化学中调整硼烷的路易斯酸度:对电子贫苯乙烯氢化的影响

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摘要

An analysis of the metal-free reduction of electron deficient olefins by frustrated Lewis pairs indicates that the rate-determining step might be either the heterolytic cleavage of H to form an -onium borohydride salt, or the subsequent transfer of the hydride moiety to the substrate following a Michael-type addition reaction. While the use of strong Lewis acids such as B(CF) facilitates the first of these processes, hydride transfer to the olefin should be contrarily favoured by the use of weak Lewis acids which, for this very same reason, might be unable to promote the prior H split. After systematic testing of several boranes of different Lewis acidity (assessed by using the Childs’ method) and steric demand, an optimal situation that employs tris(2,4,6-trifluorophenyl)borane was reached. Mixtures of this borane with 1,4-diazabicyclo[2.2.2]octane (DABCO) exhibited excellent catalytic activity for the hydrogenation of alkylidene malonates. In fact, this transformation could be achieved under milder conditions than those we reported previously. Moreover, the reaction scope could be expanded to other electron deficient olefins containing esters, sulfones or nitro functionalities as electron-withdrawing substituents.
机译:通过受抑路易斯对缺电子烯烃的无金属还原的分析表明,速率决定步骤可能是任一H的异裂,形成-onium硼氢化物盐,或氢化物基团的随后转移到基材以下Michael型加成反应。虽然使用强路易斯酸如B(CF)促进第一这些过程,氢化物转移到烯烃应相反地通过使用弱路易斯酸青睐其中对于这种非常相同的原因,可能无法以促进现有ħ分裂。不同路易斯酸性的几个硼烷的系统的测试后和空间需求,它采用三(2,4,6-三氟苯基)硼烷达到最佳的情况(通过使用童车方法评估)。此硼烷与1,4-二氮杂双环[2.2.2]辛烷(DABCO)的混合物表现出优异的催化活性为亚烷基丙二酸酯的氢化。事实上,这种转变可能比我们之前报道的较温和的条件下才能实现。此外,该反应范围可以扩大到含有酯,砜或硝基官能团作为吸电子取代基的其它缺电子烯烃。

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