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Steric and electronic modulation of iron catalysts as a route to remarkably high molecular weight linear polyethylenes

机译:铁催化剂的空间和电子调制作为显着高分子量线性聚乙烯的途径

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摘要

Five structurally related bis(arylimino)pyridine-iron(ii) chloride complexes, [2-[CMeN{2,6-{(4-FC6H4)(2)CH}(2)-4-NO2}]-6-(CMeNAr)C5H3N]FeCl2 (Ar = 2,6-Me2C6H3 Fe1, 2,6-Et2C6H3 Fe2, 2,6-i-Pr2C6H3 Fe3, 2,4,6-Me3C6H2 Fe4, and 2,6-Et-2-4-MeC6H2 Fe5), incorporating one N-2,6-bis{di(4-fluorophenyl)methyl}-4-nitrophenyl group and one distinct N-aryl group, have been prepared in good yield through the interaction of the corresponding free ligands (L1-L5) with FeCl2 center dot 4H(2)O. All ferrous complexes were paramagnetic which was manifested by broad and highly shifted peaks in their H-1 NMR spectra. The marked steric imbalance imposed by the two inequivalent N-aryl groups was a key feature highlighted in the molecular structures of representative complexes Fe1 and Fe2. Upon activation with either MAO or MMAO, Fe1-Fe5 all exhibited high activities for ethylene polymerization with good thermal stability [activities as high as 1.58 x 10(7) g (PE) mol(-1) (Fe) h(-1) at 60 degrees C], affording especially high molecular weight linear polyethylenes (3.92 x 10(5) g mol(-1) at 70 degrees C; T-m > 130 degrees C). To the best of our knowledge, the molecular weights of the polyethylenes produced by the current class of iron catalysts exceed the highest values reported for related bis(imino)pyridine-iron catalysts to date; changes in the ortho-R-1 substitution pattern offered some additional fine control of the molecular weight. Moreover, the nature of the aluminoxane co-catalyst employed had a noticeable effect on the polymer end group composition. When using MAO, unsaturated polymers containing both vinyl and n-propyl end groups were evident, whereas with MMAO, fully saturated polymers were generated containing both isobutyl and n-propyl end groups.
机译:五种结构相关的双(芳基氨基)吡啶 - 铁(II)氯化物配合物,[2- [Cmen {2,6 - {(4-Fc6H4)(2)CH}(2)-4-no2}] - 6-( Cmenar)C5H3N] FECL2(Ar = 2,6-Me2C6H3 Fe1,2,6-Et 2 C6H3 Fe2,2,6-I-PR2C6H3 Fe3,2,4,6-Me3C6H2 Fe4和2,6-ET-2-4 - 通过相应的游离配体的相互作用,掺入一个N-2,6-双(4-氟苯基)甲基} -4-硝基苯基和一个不同的N-芳基,并通过相应的游离配体的相互作用来制备含有一个N-2,6-双(4-氟苯基)甲基} -4-硝基苯基和一个不同的N-芳基。 (L1-L5)与FECL2中心点4H(2)o。所有含铁硅络合物都是顺磁,其在其H-1 NMR光谱中被宽且高度移位的峰表现出。两种不等价N-芳基施加的标记的空间不平衡是在代表性复合物Fe1和Fe2的分子结构中突出的关键特征。在用MAO或MMAO的激活后,Fe1-Fe5全部表现出高活性的乙烯聚合,具有良好的热稳定性[活性高达1.58×10(7 )g(PE)Mol(Fe)H(-1)在60摄氏度下,特别是高分子量线性聚乙烯(3.92×10(5 )g mol(-1),70℃; Tm> 130℃)。据我们所知,由目前类铁催化剂产生的聚乙烯的分子量超过了相关双(氨基)吡啶 - 铁催化剂的最高值。 Ortho-R-1替代模式的变化提供了对分子量的一些额外微量控制。此外,所用铝氧烷助催化剂的性质对聚合物端基组合物具有明显的作用。当使用MAO时,含有乙烯基和正丙基端基的不饱和聚合物是明显的,而含有MMAO,产生完全饱和的聚合物,含有异丁基和N-丙基端基。

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