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Small changes - Huge influences: NMR chemical shifts of Ni(II) complexes with polar substrates

机译:小变化-巨大影响:Ni(II)配合物与极性底物的NMR化学位移

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Neutral Ni(II) complexes have been shown to be highly valuable as robust and versatile catalysts in olefin polymerization. But they show reduced reactivity when the polar monomers methyl acrylate and vinyl acetate are incorporated. To get further insight into this behavior, NMR chemical shift calculations were performed on the system [(N,O) Ni (H) (PMe3)] 1 (N,O = $kappa 2$-N,O-{2,6-(3,5-(F3C)2C6H3)2C6H3)?£?N- C(H)-3,5-I2-2-O-C6H2}). The chemical shifts show reasonable agreement with experiment but are also extremely influenced by geometrical features of the complex as well as the inserted substrate. The first prominent feature, the low-field shift of the C_(carbonyl) in the incorporated monomer, can only be reproduced when it is in close proximity to the Ni and in this way hinders the attack of a new monomer. Second, the almost 100 ppm difference in the chemical shift of the carbon of the two substrates directly bound to Ni can be reasoned by the different directionality of polarization as disclosed by natural bond orbital (NBO) analysis.
机译:中性Ni(II)配合物已证明在烯烃聚合中作为坚固耐用的多用途催化剂具有很高的价值。但是,当掺入极性单体丙烯酸甲酯和乙酸乙烯酯时,它们显示出降低的反应性。为了进一步了解这种行为,对系统[(N,O)Ni(H)(PMe3)] 1(N,O = $ k 2 2 $ -N,O- {2, 6-(3,5-(F3C)2C6H3)2C6H3)→ΔN-C(H)-3,5-I2-2-O-C6H2}。化学位移与实验显示出合理的一致性,但也受络合物以及插入的底物的几何特征的极大影响。第一个显着特征是所掺入的单体中C_(羰基)的低场位移,只有当它非常接近Ni时才能再现,并以此方式阻止新单体的侵袭。第二,直接键合到Ni的两个衬底的碳的化学位移几乎有100 ppm的差异,可以通过自然键轨道(NBO)分析揭示的不同的极化方向性来解释。

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