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含桥联2,5-二氨基-1,4-苯醌二亚胺的双核镍和钯配合物:乙烯的合成、结构及催化齐聚反应

Dinuclear nickel and palladium complexes with bridging 2,5-diamino-1,4-benzoquinonediimines: synthesis, structures, and catalytic oligomerization of ethylene.

作者信息

Taquet Jean-Philippe, Siri Olivier, Braunstein Pierre, Welter Richard

机构信息

Laboratoire de Chimie de Coordination, UMR 7177 CNRS, Université Louis Pasteur, 4 rue Blaise Pascal, F-67070 Strasbourg Cedex, France.

出版信息

Inorg Chem. 2006 Jun 12;45(12):4668-76. doi: 10.1021/ic060019o.

Abstract

Dinuclear, divalent acetylacetonato (acac) complexes of the type [M(acac){mu-C6H2(--NR)4}M(acac)] (M = Ni, Pd) have been prepared by the reaction of the corresponding bis(acac) metal precursor with 2,5-diamino-1,4-benzoquinonediimines C6H2(NHR)2(=NR)2 (4a, R = CH2-t-Bu; 4b, R = CH2Ph; 4c, R = Ph), which are metalated and become bridging ligands, also like in the complex [(C8H11)Pt{mu-C6H2(--NCH2-t-Bu)4}Pt(C8H11)] (6) obtained by the reaction of 4a with [PtCl2(COD)]. The complexes were fully characterized, including by X-ray diffraction for [Ni(acac){mu-C6H2(--NCH2Ph)4}Ni(acac)] (9b) and [Pd(acac){mu-C6H2(--NCH2-t-Bu)4}Pd(acac)] (10a). The coordination geometry around the metal ions is square-planar, and a complete electronic delocalization of the quinonoid pi system occurs between the metal centers over the two N--C--C--C--N halves of the ligand. The nature of the N substituent explains the differences between the supramolecular stacking arrangements found for [Ni(acac){mu-C6H2(--NR)4}Ni(acac)] (9a; R = CH2-t-Bu; 9b, R = CH2Ph). The Ni complexes were evaluated as catalyst precursors for ethylene oligomerization in the presence of AlEtCl(2) or MAO as the cocatalyst, in particular in order to study possible cooperative effects resulting from electronic communication between the metal centers and to examine the influence of the N substituent on the activity and selectivity. These catalysts afforded mostly ethylene dimers and trimers.

摘要

通过相应的双(乙酰丙酮)金属前体与2,5 - 二氨基 - 1,4 - 苯醌二亚胺C6H2(NHR)2(=NR)2(4a,R = CH2 - t - Bu;4b,R = CH2Ph;4c,R = Ph)反应,制备了[M(acac){μ - C6H2(--NR)4}M(acac)]类型的双核二价乙酰丙酮(acac)配合物(M = Ni,Pd),这些二氨基苯醌二亚胺被金属化并成为桥连配体,这与通过4a与[PtCl2(COD)]反应得到的配合物[(C8H11)Pt{μ - C6H2(--NCH2 - t - Bu)4}Pt(C8H11)](6)类似。对这些配合物进行了全面表征,包括通过X射线衍射对[Ni(acac){μ - C6H2(--NCH2Ph)4}Ni(acac)](9b)和[Pd(acac){μ - C6H2(--NCH2 - t - Bu)4}Pd(acac)](10a)进行表征。金属离子周围的配位几何形状为平面正方形,并且醌型π体系在两个N - C - C - C - N半配体的金属中心之间发生了完全的电子离域。N取代基的性质解释了在[Ni(acac){μ - C6H2(--NR)4}Ni(acac)](9a;R = CH2 - t - Bu;9b,R = CH2Ph)中发现的超分子堆积排列之间的差异。在AlEtCl(2)或MAO作为助催化剂的存在下,评估了Ni配合物作为乙烯齐聚催化剂前体,特别是为了研究金属中心之间电子通讯可能产生的协同效应,并研究N取代基对活性和选择性的影响。这些催化剂主要生成乙烯二聚体和三聚体。

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