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Synthesis of Main Group and Transition Metal Complexes with the (8-Quinolyl)cyclopentadienyl Ligand and Their Application in the Polymerization of Ethylene

机译:(8-喹啉)环戊二烯基配体的主基和过渡金属配合物的合成及其在乙烯聚合中的应用

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Nucleophilic addition of 8-lithioquinoline to the Cp_2Co~+ cation leads to the formation of eta~4-(8-quinolylcyclopentadiene)(eta~5-cyclopentadienyl)cobalt(I) (7).Oxidative decomplexation with FeCl_3 liberates the quinolyl-substituted cyclopentadiene derivative 2a,which is stable at low temperature only.Deprotonation by strong bases such as NaH or KH leads to the alkali metal quinolyl cyclopentadienide salts,which are used as precursors for the synthesis of the corresponding Ti,Cr,and Al complexes.Whereas after its activation the aluminum compound 13 does not yield an olefin polymerization catalyst,the chromium(III) complex 12 reacts with methylaluminoxane (MAO) to give a highly active catalyst for the polymerization of ethylene.
机译:在Cp_2Co〜+阳离子上亲核加成8-硫代喹啉可导致生成eta_4-(8-喹啉基环戊二烯)(eta〜5-环戊二烯基)钴(I)(7).FeCl_3的氧化分解可释放出被喹啉基取代的化合物环戊二烯衍生物2a,仅在低温下稳定。通过强碱(如NaH或KH)的去质子化反应会生成碱金属喹啉基环戊二烯盐,这些盐可用作合成相应的Ti,Cr和Al络合物的前体。活化后,铝化合物13不产生烯烃聚合催化剂,铬(III)配合物12与甲基铝氧烷(MAO)反应,得到用于乙烯聚合的高活性催化剂。

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