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首页> 外文期刊>Journal of Applied Polymer Science >Ethylene polymerization by alkylidene-bridged asymmetric dinuclear titanocene/MAO systems
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Ethylene polymerization by alkylidene-bridged asymmetric dinuclear titanocene/MAO systems

机译:亚烷基桥联的不对称双核钛茂/ MAO体系进行乙烯聚合

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摘要

Two asymmetric alkylidene-bridged dinuclear titanocenium complexes (CpTiCl2)(2)(eta(5)-eta(5)-C9H6(CH2)(n)C5H4), 1 (n = 3) and 2 (n = 4) have been prepared by treating two equivalents of CpTiCl3 with the corresponding dilithium salts of the ligands C9H7(CH2)(n)C5H5 (n = 3, 4). Additionally, Ti(eta(5):eta(5)-n-BuC5H4C5H5)Cl-2 (3) and Ti(eta(5):eta(5)-n-BuC9H6C5H5)Cl-2 (4) were synthesized as corresponding mononuclear complexes. All complexes were characterized by (1)'H, C-13 NMR, and IR spectroscopy. Homogenous ethylene polymerization catalyzation using those complexes has been conducted in the presence of methylaluminoxane (MAO). The influences of reaction parameters, such as [MAO]/[Cat] molar ratio, catalyst concentration, ethylene pressure, temperature, and time have been studied in detail. The results showed that the catalytic activities of both dinuclear titanocenes were higher than those of the corresponding mononuclear titanocenes. Although the two dinuclear complexes were different in only one [CH,] unit, the catalytic activity of 2 was about 50% higher than that of 1; however, the molecular weight of polyethylene (PE) obtained by 2 was lower than that obtained from 1. The molecular weight distribution of PE produced by these dinuclear complexes reached 6.9 and 7.3, respectively. (c) 2006 Wiley Periodicals, Inc.
机译:两个不对称亚烷基桥联的双核钛鎓络合物(CpTiCl2)(2)(eta(5)-eta(5)-C9H6(CH2)(n)C5H4),1(n = 3)和2(n = 4)通过用配体C9H7(CH2)(n)C5H5(n = 3,4)的相应二锂盐处理两当量的CpTiCl3制备。此外,合成了Ti(eta(5):eta(5)-n-BuC5H4C5H5)Cl-2(3)和Ti(eta(5):eta(5)-n-BuC9H6C5H5)Cl-2(4)相应的单核复合物。所有复合物的特征在于(1)1 H,C-13 NMR和IR光谱。已经在甲基铝氧烷(MAO)的存在下使用这些配合物进行了均相乙烯聚合催化。已经详细研究了反应参数如[MAO] / [Cat]摩尔比,催化剂浓度,乙烯压力,温度和时间的影响。结果表明,两种双核钛烷的催化活性均高于相应的单核钛烷。尽管两种双核络合物仅在一个[CH]单元上有所不同,但2的催化活性比1的催化活性高约50%。然而,由2获得的聚乙烯(PE)的分子量低于从1获得的聚乙烯。由这些双核络合物产生的PE的分子量分布分别达到6.9和7.3。 (c)2006年Wiley Periodicals,Inc.

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