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Role of the Base and Control of Selectivity in the Suzuki-Miyaura Cross-Coupling Reaction

机译:基础和对铃木宫达交叉偶联反应中选择性的作用

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摘要

The outcome of the Suzuki-Miyaura cross-coupling for the direct competition reaction between two boronic acids was evaluated under routine synthesis conditions. The reaction selectivity was found to depend on the amount of the base used, with fewer bases favoring the reactivity of the boronic acid with lower pK(a) (stronger acid). The dependence of the reaction selectivity on base stoichiometry was found to increase with the increase in the difference in the pK(a) values of the competing boronic acids. These results confirm a relationship between acid-base chemistry and the Suzuki-Miyaura reaction catalytic cycle. Moreover, the results indicate that under these specific conditions, the most reactive organoboron species toward transmetalation is the borate anion RB(OH)(3)(-) instead of the neutral boronic acid RB(OH)(2). Hence, the main role of the base in the reaction mechanism is to increase the reactivity of the boronic acid toward the Pd-halide complex by converting it into the respective organoborate. In addition, boric acid, an important reaction byproduct, affects the selectivity in the Suzuki reaction because its gradual formation in the reaction medium disturbs the acid-base equilibrium.
机译:在常规合成条件下评估两种硼酸之间的直接竞争反应的Suzuki-miyaura交叉偶联的结果。发现反应选择性取决于所用碱的量,较少的碱基碱基,硼酸与较低的PK(A)(更强的酸)。发现反应选择性对基础化学计量的依赖性随着竞争硼酸的PK(a)值的差异的增加而增加。这些结果证实了酸碱化学与铃木化学反应催化循环之间的关系。此外,结果表明,在这些特定条件下,朝向透射率最有反应的有机硼物质是硼酸硼rB(OH)(3)( - )代替中性硼酸Rb(OH)(2)。因此,基碱在反应机理中的主要作用是通过将硼酸朝向Pd-卤化物复合物的反应性转化为相应的有机硼酸盐来增加硼酸朝向Pd-卤化物复合物的反应性。此外,硼酸是一个重要的反应副产物,影响铃木反应中的选择性,因为其在反应介质中的逐渐形成使酸基平衡致抗液体。

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