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Mechanism and Enantioselectivity in Palladium-Catalyzed Conjugate Addition of Arylboronic Acids to β-Substituted Cyclic Enones: Insights from Computation and Experiment

机译:钯催化共轭芳基硼酸与β-取代的环烯加成反应的机理和对映选择性:从计算和实验中获得的启示

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摘要

Enantioselective conjugate additions of arylboronic acids to β-substituted cyclic enones have been reported previously from our laboratories. Air and moisture tolerant conditions were achieved with a catalyst derived in situ from palladium(II) trifluoroacetate and the chiral ligand (S)-t-BuPyOx. We now report a combined experimental and computational investigation on the mechanism, the nature of the active catalyst, the origins of the enantioselectivity, and the stereoelectronic effects of the ligand and the substrates of this transformation. Enantioselectivity is controlled primarily by steric repulsions between the t-Bu group of the chiral ligand and the α-methylene hydrogens of the enone substrate in the enantiodetermining carbopalladation step. Computations indicate that the reaction occurs via formation of a cationic arylpalladium(II) species, and subsequent carbopalladation of the enone olefin forms the key carbon-carbon bond. Studies of non-linear effects and stoichiometric and catalytic reactions of isolated (PyOx)Pd(Ph)I complexes show that a monomeric arylpalladium-ligand complex is the active species in the selectivity-determining step. The addition of water and ammonium hexafluorophosphate synergistically increases the rate of the reaction, corroborating the hypothesis that a cationic palladium species is involved in the reaction pathway. These additives also allow the reaction to be performed at 40 °C and facilitate an expanded substrate scope.
机译:先前已经从我们的实验室报道了芳基硼酸向β-取代的环状烯酮的对映选择性共轭加成。用原位衍生自三氟乙酸钯(II)和手性配体(S)-t-BuPyOx的催化剂实现了耐空气和湿气的条件。现在,我们报告有关机理,活性催化剂的性质,对映选择性的起源以及配体和这种转化基质的立体电子效应的组合实验和计算研究。对映选择性主要由手性配体的t-Bu基团与烯酮底物的α-亚甲基氢之间的空间排斥在对映确定碳pal合步骤中控制。计算表明该反应通过形成阳离子芳基钯(II)物种而发生,并且随后烯酮烯烃的碳钯共沉淀形成关键的碳-碳键。分离的(PyOx)Pd(Ph)I配合物的非线性效应以及化学计量和催化反应的研究表明,单体芳基钯-配体配合物是选择性决定步骤中的活性物质。加入水和六氟磷酸铵可协同提高反应速度,从而证实了阳离子钯物种参与反应途径的假设。这些添加剂还可以使反应在40°C下进行,并有助于扩大底物范围。

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