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镍与新型双齿磷酰亚胺基恶唑啉和吡啶配体的配合物:在乙烯催化齐聚反应中的应用

Nickel complexes with new bidentate P,N phosphinitooxazoline and -pyridine ligands: application for the catalytic oligomerization of ethylene.

作者信息

Speiser Fredy, Braunstein Pierre, Saussine Lucien, Welter Richard

机构信息

Laboratoire de Chimie de Coordination (UMR 7513 CNRS), Université Louis Pasteur, 4 rue Blaise Pascal, F-67070 Strasbourg Cédex, France.

出版信息

Inorg Chem. 2004 Mar 8;43(5):1649-58. doi: 10.1021/ic035132i.

Abstract

The phosphinitooxazoline 4,4-dimethyl-2-[1-oxy(diphenylphosphine)-1-methylethyl]-4,5-dihydrooxazole (9), the corresponding phosphinitopyridine ligands 2-ethyl-[1'-methyl-1'-oxy(diphenylphosphino)]pyridine (11) and 2-ethyl-6-methyl-[1'-methyl-1'-oxy(diphenylphosphino)]pyridine (12), which have a one-carbon spacer between the phosphinite oxygen and the heterocycle, and the homologous ligand 2-propyl-[2'-methyl-2'-oxy(diphenylphosphino)]pyridine (13), with a two-carbon spacer, were prepared in good yields. The corresponding mononuclear [NiCl(2)(P,N)] complexes 14 (P,N = 9), 15 (P,N = 11), and 16 (P,N = 12) and the dinuclear NiCl(micro-Cl)(P,N) 17 (P,N = 13) Ni(II) complex were evaluated in the catalytic oligomerization of ethylene. These four complexes were characterized by single-crystal X-ray diffraction in the solid state and in solution with the help of the Evans method, which indicated differences between the coordination spheres in the solution and the solid state. In the presence of methylalumoxane (MAO) or AlEt(3), only the decomposition of the Ni complexes was observed. However, complexes 14-17 provided activities up to 50000 mol C(2)H(4)/(mol Ni).h (16 and 17) in the presence of only 6 equiv of AlEtCl(2). The observed selectivities for ethylene dimers were higher than 91% (for 14 or 15 in the presence of only 1.3 equiv of AlEtCl(2)). The activities for 14-17 were superior to that of [NiCl(2)(PCy(3))(2)], a typical dimerization catalyst taken as a reference. The selectivities of the complexes 14-17 for ethylene dimers and alpha-olefins were the same order of magnitude. From the study of the phosphinite 9/AlEtCl(2) system, we concluded that in our case ligand transfer from the nickel atom to the aluminum cocatalyst is unlikely to represent an activation mechanism.

摘要

膦亚胺基恶唑啉4,4 - 二甲基 - 2 - [1 - 氧代(二苯基膦)-1 - 甲基乙基] - 4,5 - 二氢恶唑(9)、相应的膦亚胺基吡啶配体2 - 乙基 - [1'- 甲基 - 1'- 氧代(二苯基膦基)]吡啶(11)和2 - 乙基 - 6 - 甲基 - [1'- 甲基 - 1'- 氧代(二苯基膦基)]吡啶(12),它们在膦亚胺氧原子和杂环之间有一个碳原子的间隔基,以及具有两个碳原子间隔基的同系物配体2 - 丙基 - [2'- 甲基 - 2'- 氧代(二苯基膦基)]吡啶(13),均以良好的产率制备得到。相应的单核[NiCl₂(P,N)]配合物14(P,N = 9)、15(P,N = 11)和16(P,N = 12)以及双核[NiCl(μ - Cl)(P,N)]₂ 17(P,N = 13)镍(II)配合物在乙烯的催化齐聚反应中进行了评估。借助埃文斯方法,通过单晶X射线衍射对这四种配合物在固态和溶液状态下进行了表征,结果表明溶液和固态中的配位环境存在差异。在甲基铝氧烷(MAO)或三乙基铝(AlEt₃)存在下,仅观察到镍配合物的分解。然而,在仅6当量的二氯乙基铝(AlEtCl₂)存在下,配合物14 - 17的活性高达50000 mol C₂H₄/(mol Ni)·h(16和17)。对于乙烯二聚体,观察到的选择性高于91%(对于14或15,仅在1.3当量的AlEtCl₂存在下)。14 - 17的活性优于作为参考的典型二聚化催化剂[NiCl₂(PCy₃)₂]。配合物14 - 17对乙烯二聚体和α - 烯烃的选择性处于相同的数量级。通过对膦亚胺9/AlEtCl₂体系的研究,我们得出结论,在我们的案例中,配体从镍原子转移到铝助催化剂不太可能是一种活化机制。

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