Department of Biochemistry, UT Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, Texas 75390-9038, United States.
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, United States.
J Am Chem Soc. 2022 Sep 7;144(35):16118-16130. doi: 10.1021/jacs.2c06493. Epub 2022 Aug 29.
Iridium(phosphoramidite) complexes catalyze an enantio- and diastereoselective three-component coupling reaction of alkenyl boronic esters, organolithium reagents, and secondary allylic carbonates. The reaction proceeds through an allylation-induced 1,2-metalate shift of the alkenyl boronate to form non-adjacent stereocenters. Mechanistic investigations outline the overall catalytic cycle and reveal trends in reactivity and selectivity. Analysis of relative stereochemistry in products derived from a variety of 1,1-disubtituted alkenyl boronates provides insight into the transition state of the addition and indicates a concerted pathway. Kinetic analysis of the reaction revealed the kinetic order dependence in boronate, the catalyst, and both the slow- and fast-reacting enantiomer of allylic carbonate as well as the turnover-limiting step of the reaction. Determination of nucleophile-specific parameters and for alkenyl boronate complexes enabled comparison to other classes of nucleophiles. DFT calculations indicate the addition of the alkenyl boronate to the cationic Ir(π-allyl) intermediate and the 1,2-metalate shift occur in a concerted mechanism. The stereoselectivity is determined by ligand-substrate steric repulsions and dispersion interactions in the addition transition state. Hammett studies supported the computational results with regard to electronic trends observed with both aryl-derived alkenyl boronates and aryl carbonates.
铱(膦酰胺)配合物催化烯基硼酸酯、有机锂试剂和仲烯丙基碳酸酯的对映选择性和非对映选择性三组分偶联反应。该反应通过烯基硼酸酯的烯丙基诱导 1,2-金属转移进行,形成非相邻的立体中心。机理研究概述了整个催化循环,并揭示了反应活性和选择性的趋势。对各种 1,1-二取代烯基硼酸酯衍生的产物的相对立体化学分析提供了对加成过渡态的深入了解,并表明了协同途径。反应的动力学分析揭示了硼酸酯、催化剂以及烯丙基碳酸酯的慢反应和快反应对映体的动力学顺序依赖性,以及反应的限速步骤。确定亲核体特异性参数 和 对于烯基硼酸酯配合物,使其能够与其他亲核体进行比较。DFT 计算表明,烯基硼酸酯与阳离子 Ir(π-烯丙基)中间体的加成和 1,2-金属转移发生在协同机制中。立体选择性由配体-底物的空间排斥和在加成过渡态中的色散相互作用决定。哈米特研究支持了计算结果,涉及到芳基衍生的烯基硼酸酯和芳基碳酸酯的电子趋势。