首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >Titanium (IV) and zirconium (IV) chloride complexes on the base of chiral tetraaryl-1,3-dioxolane-4,5-dimetanol ligands in the polymerization of ethylene: The promoting role of lithium and magnesium chloride
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Titanium (IV) and zirconium (IV) chloride complexes on the base of chiral tetraaryl-1,3-dioxolane-4,5-dimetanol ligands in the polymerization of ethylene: The promoting role of lithium and magnesium chloride

机译:基于手性四芳基-1,3-二氧戊环-4,5-二metanol配体的氯化钛(IV)和氯化锆(IV)络合物在乙烯聚合中的作用:氯化锂和氯化镁的促进作用

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摘要

Coordination compounds of titanium (IV) and zirconium (IV) with tetra-aryl-1,3-dioxolan-4,5-dimethanol (1,2) derivatives were synthesized and characterized by NMR- and IR-spectroscopy and X-ray crystallography. It was demonstrated that titanium dichloride complexes (5-6, 9-12) when treated with MAO, TMA or TIBA are inactive in ethylene polymerization catalysis. However, these compounds become catalytically active in presence of lithium or magnesium chlorides. It was found that the magnitude of the resulting catalytic activity correlates with the following factors: mode of non-transition metals chlorides introduction to the reaction mixture, the nature of activator, and its overall amount. Resulting catalytic activity varied between 54 and 3500 kg PE/mole Ti h bar. Formed polymer was a linear polyethylene of high and ultrahigh molecular weight (over 5.95 10~5 g/mole) with high polydispersity index. Possible mechanisms of lithium and magnesium chlorides ability to promote the catalytic process were proposed.
机译:合成了钛(IV)和锆(IV)与四芳基-1,3-二氧戊环-4,5-二甲醇(1,2)衍生物的配位化合物,并通过NMR和IR光谱以及X射线晶体学进行了表征。已证明当用MAO,TMA或TIBA处理时,二氯化钛配合物(5-6、9-12)在乙烯聚合催化中是无活性的。但是,这些化合物在氯化锂或氯化镁的存在下具有催化活性。已经发现,所得到的催化活性的大小与以下因素有关:非过渡金属氯化物引入反应混合物的方式,活化剂的性质及其总量。产生的催化活性在54至3500 kg PE /摩尔Ti h bar之间变化。形成的聚合物是高和超高分子量(超过5.95 10〜5 g / mol)的线性聚乙烯,具有高多分散指数。提出了锂和氯化镁促进催化过程能力的可能机理。

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