Dick Allison R, Kampf Jeff W, Sanford Melanie S
Department of Chemistry, University of Michigan, 930 North University Avenue, Ann Arbor, Michigan 48109, USA.
J Am Chem Soc. 2005 Sep 21;127(37):12790-1. doi: 10.1021/ja0541940.
This communication describes the synthesis of a family of unusually stable palladium(IV) complexes containing two chelating 2-phenylpyridine ligands and two benzoates. These complexes undergo clean C-O bond-forming reductive elimination upon heating, and the mechanism of this catalytically relevant process has been studied in detail. Solvent effects, crossover experiments, Eyring plots (which show DeltaS of -1.4 +/- 1.9 and 4.2 +/- 1.4 in CDCl3 and DMSO, respectively), and Hammett analysis (which shows rho = -1.36 +/- 0.04 upon substitution of the para-benzoate substituent) all suggest that reductive elimination does not proceed via initial dissociation of a benzoate ligand. Instead, an unusual mechanism involving pre-equilibrium dissociation of the N-arm of the phenylpyridine ligand is proposed.
本通讯报道了一系列含有两个螯合2-苯基吡啶配体和两个苯甲酸酯的异常稳定的钯(IV)配合物的合成。这些配合物在加热时会发生干净的碳-氧键形成还原消除反应,并且已经对这一催化相关过程的机理进行了详细研究。溶剂效应、交叉实验、艾林方程曲线(分别显示在CDCl3和DMSO中ΔS为-1.4±1.9和4.2±1.4)以及哈米特分析(在对位苯甲酸酯取代基取代时显示ρ=-1.36±0.04)均表明还原消除反应并非通过苯甲酸酯配体的初始解离进行。相反,提出了一种涉及苯基吡啶配体N臂预平衡解离的异常机理。