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Suppression of a palladium-mediated homocoupling in a Suzuki cross-coupling reaction. Development of an impurity control strategy supporting synthesis of LY451395

机译:铃木交叉偶联反应中钯介导的均偶联的抑制。支持合成LY451395的杂质控制策略的开发

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摘要

Described herein is the development of a control strategy resulting in exclusion of a persistent impurity (6) formed by a palladium (II)-mediated homocoupling of boronic acid (3) during a Suzuki cross-coupling reaction. Nearly complete suppression of the undesired homocoupling reaction was achieved through two process modifications. Thus, addition of a mild reducing agent, potassium formate, and use of a facile nitrogen subsurface sparge prior to introduction of the catalyst resulted in nearly complete exclusion of homocoupling dimer 6. These modifications apparently minimized the concentration of free Pd(II) in the reaction mixture without causing significant reduction of the oxidative addition product. In addition, use of palladium black as a heterogeneous coupling catalyst rendered the palladium control strategy trivial. Thus, the catalyst was separated from the product solution through use a clarifying filtration, resulting in near quantitative separation of palladium from LY 451395 (5). These conditions were successfully executed in three campaigns using 3-, 5-, 12-, and 22-L glassware.
机译:本文描述了控制策略的发展,该控制策略导致在铃木交叉偶联反应期间排除了由钯(II)介导的硼酸(3)均相偶联形成的持久性杂质(6)。通过两种方法的改进,几乎完全抑制了不希望的均偶联反应。因此,在引入催化剂之前加入温和的还原剂,甲酸钾和使用易燃的氮表面下的喷剂导致均聚物二聚体6几乎被完全排除。这些修饰显然使催化剂中游离Pd(II)的浓度最小化。反应混合物而不会明显减少氧化加成产物。此外,使用钯黑作为非均相偶联催化剂使得钯的控制策略变得微不足道。因此,通过使用澄清过滤将催化剂从产物溶液中分离出来,从而导致钯与LY 451395的定量接近分离(5)。这些条件在使用3-L,5-L,12-L和22-L玻璃器皿的三个运动中成功执行。

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