Dardir Amira H, Casademont-Reig Irene, Balcells David, Ellefsen Jonathan D, Espinosa Matthew R, Hazari Nilay, Smith Nicholas E
Department of Chemistry, Yale University, P. O. Box 208107, New Haven, Connecticut, 06520, USA.
Hylleraas Centre for Quantum Molecular Sciences, Department of Chemistry, University of Oslo, P.O. Box 1033, Blindern, N-0315 Oslo, Norway.
Organometallics. 2021 Jul 26;40(14):2332-2344. doi: 10.1021/acs.organomet.1c00085. Epub 2021 May 27.
The synthesis of triarylmethanes via Pd-catalyzed Suzuki-Miyaura reactions between diarylmethyl 2,3,4,5,6-pentafluorobenzoates and aryl boronic acids is described. The system operates at mild conditions and has a broad substrate scope, including the coupling of diphenylmethanol derivatives that do not contain extended aromatic substituents. This is significant as these substrates, which result in the types of triarylmethane products that are prevalent in pharmaceuticals, have not previously been compatible with systems for diarylmethyl ester coupling. Further, the reaction can be performed stereospecifically to generate stereo-inverted products. On the basis of DFT calculations, it is proposed that the oxidative addition of the diarylmethyl 2,3,4,5,6-pentafluorobenzoate substrate occurs via an S2 pathway, which results in the inverted products. Mechanistic studies indicate that oxidative addition of the diarylmethyl 2,3,4,5,6-pentafluorobenzoate substrates to (IPr)Pd(0) results in the selective cleavage of the O-C(benzyl) bond in part because of a stabilizing η-interaction between the benzyl ligand and Pd. This is in contrast to previously described Pd-catalyzed Suzuki-Miyaura reactions involving phenyl esters, which involve selective cleavage of the C(acyl)-O bond, because there is no stabilizing η-interaction. It is anticipated that this fundamental knowledge will aid the development of new catalytic systems, which use esters as electrophiles in cross-coupling reactions.
本文描述了通过钯催化的2,3,4,5,6-五氟苯甲酸二芳基甲酯与芳基硼酸之间的铃木-宫浦反应合成三芳基甲烷。该体系在温和条件下运行,底物范围广泛,包括不含扩展芳基取代基的二苯甲醇衍生物的偶联。这一点很重要,因为这些底物会生成药物中常见的三芳基甲烷产物类型,而此前这些底物与二芳基甲酯偶联体系不相容。此外,该反应可以立体专一性地进行以生成立体反转产物。基于密度泛函理论计算,提出2,3,4,5,6-五氟苯甲酸二芳基甲酯底物的氧化加成通过S2途径发生,从而产生反转产物。机理研究表明,2,3,4,5,6-五氟苯甲酸二芳基甲酯底物与(IPr)Pd(0)的氧化加成导致O-C(苄基)键的选择性断裂,部分原因是苄基配体与钯之间存在稳定的η相互作用。这与先前描述的涉及苯基酯的钯催化铃木-宫浦反应形成对比,后者涉及C(酰基)-O键的选择性断裂,因为不存在稳定的η相互作用。预计这一基础知识将有助于开发新的催化体系,即在交叉偶联反应中使用酯作为亲电试剂的体系。