Insertion reactions of unsymmetrical ester-activated alkynes with o-benzylamine palladacycles: a regioselectivity study
摘要:
The regioselectivities of the insertion reactions of RCdropCCO(2)Et (R = Ph, CF3) into the aryl-palladium bond of several five-membered. ortho-palladated dimethylbenzylamine complexes, [PdCl(C6H4CH2NMe2-kappaC,N)](2) (1), [PdCl(C6H4CH2NMe2-kappaC,N)(L)] [L=PEt3 (2), DMPP (3)], [Pd(C6H4CH2NMe2-kappaC,N)(NCMe)(L)]PF6 [L=MeCN (4), PEt3 (9), DMPP (5)], [Pd(OSO2CF3)(C6H4CH2NMe2-kappaC,N)(DMPP)] (6), [Pd(C6H4CHNMe2-kappaC,N)(solvent)]PF6 (7) and [Pd(C6H4CH2NMe2-kappaC,N)(DMPP)(solvent)]PF6 (8), have been compared with the help of multinuclear NMR spectroscopy. In general, the carboxylate group in the resulting seven-membered palladacycles is preferentially located next to the phenyl group of the benzylamine moiety, but this substitution pattern can be reversed by use of complexes containing electron-deficient and/or coordinatively-unsaturated palladium centres. A mechanism, based both on the experimental results described in this paper and on DFT computations, is proposed. (C) 2003 Elsevier Science B.V. All rights reserved.
DOI:
10.1016/s0020-1693(03)00149-x
作为产物:
描述:
bis[(benzyldimethylamino)chloropalladium(II)] 、 1-苯基-3,4-二甲基膦杂环戊二烯) 以
not given 为溶剂,
以99%的产率得到[PdCl(C6H4CH2NMe2-κC,N)(3,4-dimethyl-1-phenylphosphole)]
参考文献:
名称:
Insertion reactions of unsymmetrical ester-activated alkynes with o-benzylamine palladacycles: a regioselectivity study
摘要:
The regioselectivities of the insertion reactions of RCdropCCO(2)Et (R = Ph, CF3) into the aryl-palladium bond of several five-membered. ortho-palladated dimethylbenzylamine complexes, [PdCl(C6H4CH2NMe2-kappaC,N)](2) (1), [PdCl(C6H4CH2NMe2-kappaC,N)(L)] [L=PEt3 (2), DMPP (3)], [Pd(C6H4CH2NMe2-kappaC,N)(NCMe)(L)]PF6 [L=MeCN (4), PEt3 (9), DMPP (5)], [Pd(OSO2CF3)(C6H4CH2NMe2-kappaC,N)(DMPP)] (6), [Pd(C6H4CHNMe2-kappaC,N)(solvent)]PF6 (7) and [Pd(C6H4CH2NMe2-kappaC,N)(DMPP)(solvent)]PF6 (8), have been compared with the help of multinuclear NMR spectroscopy. In general, the carboxylate group in the resulting seven-membered palladacycles is preferentially located next to the phenyl group of the benzylamine moiety, but this substitution pattern can be reversed by use of complexes containing electron-deficient and/or coordinatively-unsaturated palladium centres. A mechanism, based both on the experimental results described in this paper and on DFT computations, is proposed. (C) 2003 Elsevier Science B.V. All rights reserved.