Department of Chemistry, Texas A&M University , College Station, Texas 77842, United States.
J Am Chem Soc. 2016 Aug 3;138(30):9487-97. doi: 10.1021/jacs.6b03656. Epub 2016 Jul 20.
The catalytic C-H borylation of arenes with HBpin (pin = pinacolate) using POCOP-type pincer complexes of Ir has been demonstrated, with turnover numbers exceeding 10 000 in some cases. The selectivity of C-H activation was based on steric preferences and largely mirrored that found in other Ir borylation catalysts. Catalysis in the (POCOP)Ir system depends on the presence of stoichiometric quantities of sacrificial olefin, which is hydrogenated to consume the H2 equivalents generated in the borylation of C-H bonds with HBpin. Smaller olefins such as ethylene or 1-hexene were more advantageous to catalysis than sterically encumbered tert-butylethylene (TBE). Olefin hydroboration is a competing side reaction. The synthesis and isolation of multiple complexes potentially relevant to catalysis permitted examination of several key elementary reactions. These experiments indicate that the C-H activation step in catalysis ostensibly involves oxidative addition of an aromatic C-H bond to the three-coordinate (POCOP)Ir species. The olefin is mechanistically critical to gain access to this 14-electron, monovalent Ir intermediate. C-H activation at Ir(I) here is in contrast to the olefin-free catalysis with state-of-the-art Ir complexes supported by neutral bidentate ligands, where the C-H activating step is understood to involve trivalent Ir-boryl intermediates.
已经证明,使用 POCOP 型夹钳配合物 Ir 可以实现 HBpin(pin = 频哪醇)催化的芳基 C-H 硼化,在某些情况下,周转数超过 10000。C-H 活化的选择性基于空间位阻偏好,并且在很大程度上反映了在其他 Ir 硼化催化剂中发现的选择性。(POCOP)Ir 体系中的催化依赖于化学计量的牺牲烯烃的存在,烯烃被氢化以消耗 HBpin 对 C-H 键硼化产生的 H2 当量。与空间位阻较大的叔丁基乙烯(TBE)相比,较小的烯烃如乙烯或 1-己烯对催化更有利。烯烃氢硼化是一种竞争的副反应。多个可能与催化相关的配合物的合成和分离允许对几个关键的基本反应进行检查。这些实验表明,催化中 C-H 活化步骤实质上涉及芳族 C-H 键与三配位(POCOP)Ir 物种的氧化加成。烯烃在获得这种 14 电子、单价 Ir 中间体方面在机理上是至关重要的。这里的 Ir(I)上的 C-H 活化与无烯烃的催化形成对比,无烯烃的催化使用由中性双齿配体支持的最先进的 Ir 配合物,其中理解 C-H 活化步骤涉及三价 Ir-硼基中间体。