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具有额外弱的agostic相互作用的单体T形芳基钯(II)卤化物配合物的合成、结构、理论研究及配体交换反应

Synthesis, structure, theoretical studies, and Ligand exchange reactions of monomeric, T-shaped arylpalladium(II) halide complexes with an additional, weak agostic interaction.

作者信息

Stambuli James P, Incarvito Christopher D, Bühl Michael, Hartwig John F

机构信息

Department of Chemistry, Yale University, P.O. Box 208107, New Haven, Connecticut 06520-8107, USA.

出版信息

J Am Chem Soc. 2004 Feb 4;126(4):1184-94. doi: 10.1021/ja037928m.

DOI:10.1021/ja037928m
PMID:14746489
Abstract

A series of monomeric arylpalladium(II) complexes LPd(Ph)X (L = 1-AdPtBu2, PtBu3, or Ph5FcPtBu2 (Q-phos); X = Br, I, OTf) containing a single phosphine ligand have been prepared. Oxidative addition of aryl bromide or aryl iodide to bis-ligated palladium(0) complexes of bulky, trialkylphosphines or to Pd(dba)2 (dba = dibenzylidene acetone) in the presence of 1 equiv of phosphine produced the corresponding arylpalladium(II) complexes in good yields. In contrast, oxidative addition of phenyl chloride to the bis-ligated palladium(0) complexes did not produce arylpalladium(II) complexes. The oxidative addition of phenyl triflate to PdL2 (L = 1-AdPtBu2, PtBu3, or Q-phos) also did not form arylpalladium(II) complexes. The reaction of silver triflate with (1-AdPtBu2)Pd(Ph)Br furnished the corresponding arylpalladium(II) triflate in good yield. The oxidative addition of phenyl bromide and iodide to Pd(Q-phos)2 was faster than oxidative addition to Pd(1-AdPtBu2)2 or Pd(PtBu3)2. Several of the arylpalladium complexes were characterized by X-ray diffraction. All of the arylpalladium(II) complexes are T-shaped monomers. The phenyl ligand, which has the largest trans influence, is located trans to the open coordination site. The complexes appear to be stabilized by a weak agostic interaction of the metal with a ligand C-H bond positioned at the fourth-coordination site of the palladium center. The strength of the Pd.H bond, as assessed by tools of density functional theory, depended upon the donating properties of the ancillary ligands on palladium.

摘要

已制备出一系列含有单个膦配体的单体芳基钯(II)配合物LPd(Ph)X(L = 1-AdPtBu2、PtBu3或Ph5FcPtBu2(Q-膦);X = Br、I、OTf)。在1当量膦存在下,芳基溴或芳基碘对大位阻三烷基膦的双配位钯(0)配合物或对Pd(dba)2(dba = 二亚苄基丙酮)进行氧化加成,以良好产率生成相应的芳基钯(II)配合物。相比之下,苯基氯对双配位钯(0)配合物的氧化加成未生成芳基钯(II)配合物。苯基三氟甲磺酸酯对PdL2(L = 1-AdPtBu2、PtBu3或Q-膦)的氧化加成也未形成芳基钯(II)配合物。三氟甲磺酸银与(1-AdPtBu2)Pd(Ph)Br反应,以良好产率得到相应的芳基钯(II)三氟甲磺酸盐。苯基溴和碘对Pd(Q-膦)2的氧化加成比对Pd(1-AdPtBu2)2或Pd(PtBu3)2的氧化加成更快。通过X射线衍射对几种芳基钯配合物进行了表征。所有芳基钯(II)配合物均为T形单体。具有最大反位影响的苯基配体位于与开放配位位点相对的位置。这些配合物似乎通过金属与位于钯中心第四配位位点的配体C-H键的弱邻位相互作用而稳定。通过密度泛函理论工具评估的Pd-H键强度取决于钯上辅助配体的给电子性质。

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