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Dual-side ansa-zirconocene dichlorides for high molecular weight isotactic polypropene elastomers

机译:用于高分子量等规聚丙烯弹性体的双面ansa-锆茂金属二氯化物

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The four new asymmetric ansa-zirconocene dichlorides rac-[1-(9-eta(5)-fluorenyl)-2-(2-phenyl-1-eta(5)-indenyl)ethane]zirconium dichloride (4c), rac-[(9-eta(5)-fluorenyl)(5,6-cyclopenta -2-methyl-1-eta(5)-indenyl)dimethylsilane]zirconium dichloride (4d), rac-[(9-eta(5)-fluorenyl)(2-methyl-1-eta(5)-indenyl)dimethylsilane]zirconi um dichloride (4e), and rac-[(9-eta(5)-fluorenyl)(2-phenyl-1-eta(5)-indenyl)dimethylsilane]zirconi um dichloride (4f) have been prepared, and their polymerization behavior was compared to the recently published rac-[1-(9-eta(5)-fluorenyl)-2-(5,6-cyclopenta 2-methyl-1-eta(5)-indenyl)ethane]zirconium dichloride (4a) and rac-[1-(9-eta(5)-fluorenyl)-2-(2-methyl-1-eta(5)-indenyl)ethane]zirconium dichloride (4b). The Si-bridged ligands are easily accessible by the reaction of fluorenyllithium with dimethyldichlorosilane and the subsequent addition of indenyllithium. A similar route using 1-(9-fluorenyl)-2-bromoethane was applied for the synthesis of the ethylene-bridged ligands. The Zr(IV) complexes of all ligands are highly active catalysts for the propene polymerization reaction after activation with MAO. The influence of the bridge and the particular substitution pattern of the indenyl fragments has been studied with respect to monomer concentration and polymerization temperature. The exchange of the ethylene bridge by a dimethylsilane unit results in a strong increase of the molecular weights but also in a decreased polymerization activity deriving from a fast decomposition of the active catalyst species. Interestingly, significantly higher polymer molecular weights could be found for the complexes that contain the 5,6-cyclopentyl substituent on the indenyl moiety. All catalysts showed the effect of a declining stereoselectivity with increasing monomer concentration, leading to the formation of homopolypropene elastomers. The mechanism of stereoerror formation of these C-1-symmetric species was investigated by deuterium labeling studies on the propene monomers and by comparison with Ct-symmetric complexes. [References: 39]
机译:四种新的不对称ansa-锆茂金属二氯化物rac- [1-(9-eta(5)-芴基)-2-(2-苯基-1-eta(5)-茚基)乙烷]二氯化锆(4c),rac- [(9-eta(5)-芴基)(5,6-环戊-2--甲基-1-eta(5)-茚基)二甲基硅烷]二氯化锆(4d),rac-[(9-eta(5)-芴基)(2-甲基-1-eta(5)-茚基)二甲基硅烷]二氯化锆(4e)和rac-[(9-eta(5)-芴基)(2-苯基-1-eta(5)已经制备了-茚基)二甲基硅烷]二氯化锆(4f),并将其聚合行为与最近发表的rac- [1-(9-eta(5)-芴基)-2-(5,6-cyclopenta 2 -甲基-1-eta(5)-茚基)乙烷]二氯化锆和rac- [1-(9-eta(5)-芴基)-2-(2-甲基-1-eta(5)-茚基)乙烷]二氯化锆(4b)。通过芴基锂与二甲基二氯硅烷的反应以及随后的茚基锂的添加,可以容易地获得硅桥连的配体。使用1-(9-芴基)-2-溴乙烷的类似方法被用于合成乙烯桥连的配体。所有配体的Zr(IV)络合物都是在用MAO活化后用于丙烯聚合反应的高活性催化剂。关于单体浓度和聚合温度,已经研究了桥键和茚基片段的特定取代方式的影响。通过二甲基硅烷单元的乙烯桥的交换导致分子量的强烈增加,但是由于活性催化剂种类的快速分解而导致聚合活性降低。有趣的是,对于在茚基部分上包含5,6-环戊基取代基的配合物,可以发现明显更高的聚合物分子量。所有催化剂均显示出随着单体浓度的增加,立体选择性下降的作用,导致均聚丙烯弹性体的形成。通过对丙烯单体进行氘标记研究并与Ct对称配合物进行比较,研究了这些C-1对称物种形成立体错误的机理。 [参考:39]

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