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由磷化物或叠氮化物配体桥连的多核钯(II)配合物的合成与结构

Synthesis and Structure of Multinuclear Pd(II) Complexes Bridged by Phosphide or Azide Ligands.

作者信息

Takeuchi Katsuhiko, Kim Kun-Woo, Kim Yong-Joo, Fukaya Norihisa, Sato Kazuhiko, Choi Jun-Chul

机构信息

National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba Central 5, 1-1-1 Higashi, Tsukuba 305-8565, Ibaraki, Japan.

Department of Chemistry, Kangnung-Wonju National University, Gangneung 210-702, Korea.

出版信息

ACS Omega. 2020 Nov 9;5(46):29706-29713. doi: 10.1021/acsomega.0c03317. eCollection 2020 Nov 24.

Abstract

The synthesis and structure of phosphide- and azide-bridged multinuclear Pd(II) complexes bearing phosphine ligands [PdX(μ-X')(PR)] (X = Cl and N; X' = PR and N; = 2 and 4) are reported. The oxidative addition of R PCl to Pd(PMe) furnished the phosphide-bridged dinuclear Pd(II) complexes [PdCl(μ-PR )(PMe)] [R' = Pr () and Cy ()]. However, the oxidative addition of (-tolyl)PCl to Pd(PMe) produced a nonbridged mononuclear Pd(II) complex with the bis(-tolyl)phosphinic ligand, -[Pd(PMe){P(O)(-tolyl)}] (), via oxidation of the phosphinyl ligand. The reaction of the chloride-bridged dinuclear Pd(II) complexes [PdCl(μ-Cl)(PR)] [PR = PEt () and PPhMe ()] with NaN afforded the azide-bridged dinuclear and tetranuclear Pd(II) complexes [Pd(N)(μ-N)(PEt)] () and [Pd(N)(μ-N)(PPhMe)] (). Comparisons of the X-ray structures of and show that the square-planar molecular geometry of the Pd(II) centers of are more distorted than those of . Density functional theory calculations suggest that the tetranuclear eight-membered ring structure like is more stable than the dinuclear four-membered ring structure like in the gas phase in both PEt and PPhMe systems. However, because the relative energy difference between the four-membered and eight-membered ring structures is small in the PEt system with smaller steric hindrance compared with PPhMe, it is assumed that this difference is compensated by the crystal packing energy, and the dinuclear four-membered ring complex is actually obtained.

摘要

报道了含膦配体的磷化物和叠氮化物桥联多核钯(II)配合物[PdX(μ-X')(PR)] (X = Cl和N;X' = PR 和N; = 2和4)的合成与结构。R PCl对Pd(PMe)的氧化加成得到了磷化物桥联的双核钯(II)配合物[PdCl(μ-PR )(PMe)] [R' = Pr ()和Cy ()]。然而,(-甲苯基)PCl对Pd(PMe)的氧化加成通过磷酰基配体的氧化产生了带有双(-甲苯基)次膦酸配体的非桥联单核钯(II)配合物,即 -[Pd(PMe){P(O)(-甲苯基)}] ()。氯桥联双核钯(II)配合物[PdCl(μ-Cl)(PR)] [PR = PEt ()和PPhMe ()]与NaN的反应得到了叠氮化物桥联的双核和四核钯(II)配合物[Pd(N)(μ-N)(PEt)] ()和[Pd(N)(μ-N)(PPhMe)] ()。 和 的X射线结构比较表明, 中钯(II)中心的平面正方形分子几何结构比 中的更扭曲。密度泛函理论计算表明,在气相中,无论是在PEt还是PPhMe体系中,像 这样的四核八元环结构比像 这样的双核四元环结构更稳定。然而,由于与PPhMe相比,在空间位阻较小的PEt体系中,四元环和八元环结构之间的相对能量差较小,因此推测这种差异由晶体堆积能补偿,实际上得到了双核四元环配合物 。

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