4.5 Article

Structural and kinetic effects of chloride ions in the palladium-catalyzed allylic substitutions

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JOURNAL OF ORGANOMETALLIC CHEMISTRY
卷 687, 期 2, 页码 365-376

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ELSEVIER SCIENCE SA
DOI: 10.1016/S0022-328X(03)00791-5

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allylic substitution; allyl complex; chloride ions; kinetics; mechanism; palladium

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Addition of ligands to [Pd(eta(3)-RCH-CH-CH2)(mu-Cl)](2) or chloride ions to cationic [(eta(3)-RCH-CH-CH2)PdL2]+BF4- induces the formation of neutral complexes eta(1)-RCH=CH-CH2-PdClL2 (R = H with L = (4-Cl-C6H4)(3)P, (4-CH3-C6H4)(3)P, (4-CF3-C6H4)(3)P or L, = 1 2-bis(diphenylphosphino)butane (dppb), 1,1'-bis(diphenylphosphino)ferrocene (dppl); R =Ph with L = (4-Cl-C6H4)(3)P), instead of the expected cationic complexes [(eta(3)-RCH-CH-CH2,)PdL2]Cl-+(-). In the presence of chloride ions, the reaction of morpholine with the cationic complexes [(eta(3)-allyl)Pd(PAr3)(2)]+BF4- (Ar =4-Cl-C6H4, 4-CH3-C6H4) goes slower and involves both cationic [(eta(3)-allyl)Pd(PAr3)(2)](+)' and neutral eta(1)-allyl-PdCl(PAr3)(2) complexes as reactive species in equilibrium with Cl-. The cationic complex is more reactive than the neutral one. However, their relative contribution in the reaction strongly depends on the chloride concentration, which controls their relative concentration. The neutral eta(1)-allyl-PdCl(PAr3)(2) may become the major reactive species at high chloride concentration. Consequently, [Pd(eta(3)-allyl)(mu-Cl)](2) associated with ligands or cationic [(eta(3)-allyl)PdL2]+BF4-, used indifferently as precursors in palladium-catalyzed allylic substitutions, are not equivalent. In both situations, the mechanism of the Pd-catalyzed allylic substitution depends on the concentration of the chloride ions, delivered by the precursor or purposely added, that determines which species, [(eta(3)-allyl)PdL2](+) or/and eta(1)-allyl-PdClL2 are involved in the nucleophilic attack with consequences on the rate of the reaction and probably on its regioselectivity. Consequently, the chloride ions of the catalytic precursors [Pd(eta(3)-allyl)(mu-Cl)](2) must not be considered as 'innocent' ligands. (C) 2003 Elsevier B.V. All rights reserved.

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