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Dinickel Bisphenoxyiminato Complexes for the Polymerization of Ethylene and α-Olefins

机译:Dinickel Bisphenoxyiminato配合的乙烯聚合和α-烯烃

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摘要

Dinuclear nickelphenoxyiminato olefin polymerization catalysts based on rigid p-terphenyl frameworks are reported. Permethylation of the central arene of the terphenyl unit and oxygen substitution of the peripheral rings ortho to the aryl-aryl linkages blocks rotation around these linkages allowing atropisomers of the ligand to be isolated. The corresponding syn and anti dinickel complexes (>25-s and >25-a) were synthesized and characterized by single crystal X-ray diffraction. These frameworks limit the relative movement of the metal centers restricting the metal-metal distance. Kinetics studies of isomerization of a ligand precursor (>7-a) allowed the calculation of the activation parameters for the isomerization process (ΔH = 28.0 ± 0.4 kcal×mol−1 and ΔS = −12.3 ± 0.4 cal×mol−1×K−1). The reported nickel complexes are active for ethylene polymerization [TOF up to 3700 (mol C2H4)×(mol Ni)−1×h−1] and ethylene/α-olefin copolymerization. Only methyl branches are observed in the polymerization of ethylene, while α-olefins are incorporated without apparent chain walking. These catalysts are active in the presence of polar additives and in neat tetrahydrofuran. The syn and anti isomers differ in polymerization activity and polymer degree of branching and molecular weight. For comparison, a series of mononuclear nickel complexes (>26, >27-s, >27-a, >28, >30) was prepared and studied. The effects of structure and catalyst nuclearity on reactivity are discussed.
机译:据报道,基于刚性P-三苯基框架的二核镍苯氧氧氧基氨基甲酸盐烯烃聚合催化剂。将苯基单位的中央芳烃的渗透性和外周环的氧代官邻芳基 - 芳基键围绕这些连杆旋转,允许分离配体的过度异构体。通过单晶X射线衍射合成并表征相应的SYN和抗Dinickel络合物(<强> 25-s 和<强> 25-α)。这些框架限制了限制金属金属距离的金属中心的相对运动。配体前体的异构化的动力学研究(<强> 7-A )允许计算异构化过程的活化参数(ΔH = 28.0±0.4 kcal×mol -1 和Δs = -12.3±0.4 cal×mol -1 ×k -1 )。报道的镍复合物是活性的乙烯聚合[TOF高达3700(Mol C 2 H 4)×(mol Ni) -1-sup>×h -1 -1 / sop>]和乙烯/α-烯烃共聚。在乙烯的聚合中观察到甲基枝,而α-烯烃在没有明显的链条行走的情况下掺入。这些催化剂在极性添加剂和整齐的四氢呋喃中具有活性。 SYN和抗异构体在聚合活性和分支和分子量的聚合物度方面不同。相比之下,一系列单核镍络合物(<强> 26℃>,<强> 27-S ,<浓度> 27-a ,> 28 , <强烈> 30 )制备并研究。讨论了结构和催化剂核性对反应性的影响。

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