Palladium/P,O-ligand-catalyzed Suzuki cross-coupling reactions of arylboronic acids and aryl chlorides. Isolation and structural characterization of (P,O)-Pd(dba) complex

Citation
Xh. Bei et al., Palladium/P,O-ligand-catalyzed Suzuki cross-coupling reactions of arylboronic acids and aryl chlorides. Isolation and structural characterization of (P,O)-Pd(dba) complex, J ORG CHEM, 64(18), 1999, pp. 6797-6803
Citations number
67
Categorie Soggetti
Chemistry & Analysis","Organic Chemistry/Polymer Science
Journal title
JOURNAL OF ORGANIC CHEMISTRY
ISSN journal
00223263 → ACNP
Volume
64
Issue
18
Year of publication
1999
Pages
6797 - 6803
Database
ISI
SICI code
0022-3263(19990903)64:18<6797:PSCROA>2.0.ZU;2-5
Abstract
The phenyl backbone-derived P,O-ligands 1 and 2 were investigated for their utility as ligands in palladium/ligand-catalyzed Suzuki reactions. The 2-( 2'-dicyclohexylphosphinophenyl)-2-methyl-1,3-dioxolane (ligand 1) in combin ation with Pd(dba)a affords an efficient catalyst for general Suzuki reacti ons of a wide variety of arylboronic acids and aryl chlorides, bromides, an d iodides to afford the desired biaryl products in high isolated yields. Ar ylboronic acids and aryl chlorides containing electron-poor, electron-rich, and ortho substituents participate effectively. In contrast, the structura lly related ligand 2-(2'-dicyclohexylphosphinophenyl)-1,3-dioxolane (ligand 2) was found to be less efficient under similar conditions. The reaction o f ligand 1 with Pd(dba)P affords the complex LPd(dba) (14, L = 1). The NMR spectroscopic and X-ray crystallographic data of complex 14 establish that ligand 1 functions as a P,O-chelating ligand in complex 14. The reaction of ligand 2 (2 equiv) with Pd(dba)(2) and excess 4-Bu-t-C6H4Br or the ligand displacement reaction of {Pd[P(o-tolyl)(3)](4-Bu-t-C6H4)(mu-Br)}(2) with li gand 2 affords the bis-phosphine complex L2Pd(4-Bu-t-C6H4)(Br) (13, L = a). The NMR spectroscopic data of complex 13 establish that ligand 2 in comple x 13 functions as a nonchelating ligand. Thus, the higher efficiency of lig and 1 over ligand 2 in Pd/L-catalyzed Suzuki arylation of aryl chlorides ca n be ascribed to the ability of ligand 1 to generate and stabilize monophos phine P,O-chelating Pd/L intermediates, which appear to be most suitable fo r Suzuki arylation reactions involving certain substrates and conditions.