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Alternative Models of Iron and Cobalt Catalysts for Ethylene Oligomerization and Polymerization
作者姓名:Katrin Wedeking  Sherrif Adewuyi  Maliha Asma  Igor Vystorop  Saliu Amolegbe  Elena Novikova
作者单位:Key Laboratory of Engineering Plastics Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China,Key Laboratory of Engineering Plastics,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China,Key Laboratory of Engineering Plastics,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China,Key Laboratory of Engineering Plastics,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China,Key Laboratory of Engineering Plastics,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China,Key Laboratory of Engineering Plastics,Institute of Chemistry,Chinese Academy of Sciences,Beijing 100080,China
摘    要:1 Results Great progresses have been made in the field of transition metal-based complexes as catalytic precursors for olefin oligomerization and polymerization,in which the core subjects will remain as "know and how" to develop novel catalysts both in academic and industrial consideration.The key advantage of iron and cobalt catalyst for ethylene polymerization is to produce vinyl-type polyethylenes.Therefore following the pioneering works of bis(imino) pyridyl iron and cobalt catalyst by Brookhart1] and Gibson2] in 1998,there have been many contributions toward their derivatives' complexes for the investigation of their catalytic behaviors.However,there are few examples successful good activity catalysts based upon new designed ligands such as monoiminopyridines3],2-imino-1,10-phenanthrolines4],2-benzimidazolylpyridines5],2-quinoxalinyl-6-imino pyridines6] and bimetallic complex7].Those catalysts performed good to high catalytic activities towards ethylene oligomerization and polymerization,meanwhile most of them were first contributed with our efforts inspired by bis(imino)pyridyl metal catalyst.Herein we will present our results with designing pathways,and academic and industrial considerations.

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