Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
Department of Process Research & Development, Merck & Company, Limited, Rahway, New Jersey 07065, United States.
J Am Chem Soc. 2020 Mar 18;142(11):5272-5281. doi: 10.1021/jacs.9b13876. Epub 2020 Mar 3.
The asymmetric hydrogenation of α,β-unsaturated carboxylic acids using readily prepared bis(phosphine) cobalt(0) 1,5-cyclooctadiene precatalysts is described. Di-, tri-, and tetra-substituted acrylic acid derivatives with various substitution patterns as well as -α-amino acid derivatives were hydrogenated with high yields and enantioselectivities, affording chiral carboxylic acids including Naproxen, ()-Flurbiprofen, and a d-DOPA precursor. Turnover numbers of up to 200 were routinely obtained. Compatibility with common organic functional groups was observed with the reduced cobalt(0) precatalysts, and protic solvents such as methanol and isopropanol were identified as optimal. A series of bis(phosphine) cobalt(II) bis(pivalate) complexes, which bear structural similarity to state-of-the-art ruthenium(II) catalysts, were synthesized, characterized, and proved catalytically competent. X-band EPR experiments revealed bis(phosphine)cobalt(II) bis(carboxylate)s were generated in catalytic reactions and were identified as catalyst resting states. Isolation and characterization of a cobalt(II)-substrate complex from a stoichiometric reaction suggests that alkene insertion into the cobalt hydride occurred in the presence of free carboxylic acid, producing the same alkane enantiomer as that from the catalytic reaction. Deuterium labeling studies established homolytic H (or D) activation by Co(0) and cis addition of H (or D) across alkene double bonds, reminiscent of rhodium(I) catalysts but distinct from ruthenium(II) and nickel(II) carboxylates that operate by heterolytic H cleavage pathways.
本文描述了使用易于制备的双(膦)钴(0)1,5-环辛二烯前催化剂对α,β-不饱和羧酸进行不对称氢化。具有各种取代模式的二取代、三取代和四取代丙烯酸衍生物以及-α-氨基酸衍生物都以高产率和对映选择性氢化,得到包括萘普生、()-氟比洛芬和 d-DOPA 前体在内的手性羧酸。通常可以获得高达 200 的转化率。还原的钴(0)前催化剂表现出与常见有机官能团的兼容性,并且确定甲醇和异丙醇等质子溶剂为最佳溶剂。合成、表征了一系列具有与最先进的钌(II)催化剂结构相似的双(膦)钴(II)双(pivalate)配合物,并证明其具有催化活性。X 波段 EPR 实验表明,在催化反应中生成了双(膦)钴(II)双(羧酸酯),并将其鉴定为催化剂的静止状态。从计量反应中分离和表征钴(II)-底物配合物表明,在游离羧酸存在下,烯烃插入钴氢化物中,生成与催化反应相同的烷烃对映体。氘标记研究建立了 Co(0)的均裂 H(或 D)活化和 H(或 D)在烯烃双键上的顺式加成,这让人联想到铑(I)催化剂,但与通过异裂 H 途径作用的钌(II)和镍(II)羧酸酯不同。