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Origin of the Difference in Reactivity between Ir Catalysts for the Borylation of C-H Bonds

机译:Ir催化剂之间C-H键硼化反应活性差异的起源

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A mechanistic study on the origin of the difference in reactivity between Ir catalysts for C-H borylation reactions is reported. Catalytic reactions of B(2)pin(2) with a series of substrates that require high temperatures and long reaction times were conducted. These reactions catalyzed by the combination of [Ir(COD)(OMe)](2) and 3,4,7,8-tetramethylphenanthroline (tmphen) occur in yields that are substantially higher than those of reactions catalyzed by [Ir(COD)(OMe)](2) and 4,4'-di-tert-butylbipyridine (dtbpy). The electronic properties of Ir catalysts ligated by dtbpy or tmphen and their stoichiometric reactivity were investigated. It was found that a longer lifetime rather than higher reactivity of the catalyst leads to higher yields of reactions catalyzed by Ir-tmphen. The catalyst ligated by dtbpy decomposes principally by dissociation of the ligand and rapid borylation at the positions alpha to nitrogen. Thus, the greater stability of the catalyst containing tmphen results from its greater binding constant.
机译:报道了有关C-H硼化反应的Ir催化剂之间反应性差异的起源的机理研究。 B(2)pin(2)与一系列需要高温和长反应时间的底物的催化反应。 [Ir(COD)(OMe)](2)和3,4,7,8-四甲基菲咯啉(tmphen)组合催化的这些反应的收率明显高于[Ir(COD)(OMe)](2)和(OMe)](2)和4,4'-二叔丁基联吡啶(dtbpy)。研究了由dtbpy或tmphen连接的Ir催化剂的电子性质及其化学计量反应性。发现更长的寿命而不是更高的催化剂反应性导致由Ir-tmphen催化的反应的更高产率。通过dtbpy连接的催化剂主要通过配体的解离和在α至氮位置的快速硼化而分解。因此,包含tmphen的催化剂的更大的稳定性归因于其更大的结合常数。

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