A Hierarchy of Ligands Controls Formation and Reaction of Aryl Radicals in Pd-Catalyzed Ground-State Base-Promoted Coupling Reactions

被引:7
作者
Clark, Kenneth F. [1 ]
Tyerman, Seb [1 ]
Evans, Laura [2 ]
Robertson, Craig M. [3 ]
Nelson, David J. [1 ]
Kennedy, Alan R. [1 ]
Murphy, John A. [1 ]
机构
[1] Univ Strathclyde, Dept Pure & Appl Chem, Glasgow G1 1XL, Scotland
[2] Med Chem Res & Early Dev, Oncol R&D, AstraZeneca, Cambridge CB10 1XL, England
[3] GSK Med Res Ctr, Stevenage SG1 2NY, Herts, England
基金
英国工程与自然科学研究理事会;
关键词
INTERMOLECULAR DIRECT ARYLATION; TRANSFER CYCLIZATION REACTIONS; ELECTRON-DONORS; PALLADIUM; BENZENE; HALIDES; MILD; 1,10-PHENANTHROLINE; POTENTIALS; ACTIVATION;
D O I
10.1021/jacs.3c05470
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Palladium salts and complexes were tested separately and in the presence of added ligands as potential sources of aryl radicals in ground-state coupling reactions of aryl halide with arenes under basic conditions (KOtBu). Our recently developed assay for aryl radicals was employed to test for aryl radicals. In this assay, aryl radicals derived from the test substrate, 1-iodo-2,6-dimethylbenzene 7, undergo base-promoted homolytic aromatic substitution (BHAS) with benzene to produce 2,6-dimethylbiphenyl 8 and biphenyl 9 in an approximately 1:4 ratio as well as m-xylene 10. The biphenyl arises from a diagnostic radical transfer reaction with the solvent benzene. Using substrate 7 with a range of Pd sources as potential initiators led to formation of 8, 9, and 10 in varying amounts. However, when any one of a range of diphosphinoferrocenes (e.g., dppf or dippf) or BINAP or the monophosphine, diphenylphosphinoferrocene, was added as a ligand to Pd(OAc)(2), the ratio of [2,6-dimethylbiphenyl 8: biphenyl 9] moved decisively to that expected from the BHAS (radical) pathway. Further studies were conducted with dppf. When dppf was added to each of the other Pd sources, the ratio of coupled products was also diverted to that expected for radical BHAS chemistry. Deuterium isotope studies and radical trap experiments provide strong additional support for the involvement of aryl radicals. Accordingly, under these ground-state conditions, palladium sources, in the presence of defined ligands, convert aryl iodides to aryl radicals. A rationale is proposed for these observations.
引用
收藏
页码:20849 / 20858
页数:10
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