6533b7dbfe1ef96bd127146b

RESEARCH PRODUCT

Constrained formation of 2-(1-(arylimino)ethyl)-7-arylimino-6,6-dimethylcyclopentapyridines and their cobalt(ii) chloride complexes: synthesis, characterization and ethylene polymerization

Xinquan HuWen-hua SunShizhen DuZygmunt FlisakZygmunt FlisakJunjun BaJunjun BaErlin Yue

subject

Ethylene010405 organic chemistryGeneral Chemical EngineeringInorganic chemistrychemistry.chemical_elementGeneral Chemistry010402 general chemistry01 natural sciencesChlorideNitrogen0104 chemical sciencesCatalysisCobalt(II) chloridechemistry.chemical_compoundPolymerizationchemistryPolymer chemistrymedicineCobaltSingle crystalmedicine.drug

description

A series of 2-(1-(arylimino)ethyl)-7-arylimino-6,6-dimethylcyclopentapyridine derivatives (L1-L5) was synthesized, and individually reacted with cobalt(II) chloride to form the corresponding cobalt chloride complexes (C1-C4). These compounds were characterized, and the single crystal X-ray diffraction for two representative cobalt complexes was carried out. The molecular structures indicate that 2,7-bis(arylimino)cyclopentapyridines act as tridentate ligands; however, one of the Co-N coordinative bonds is weak due to the spatial separation of nitrogen atoms. Upon activation with either MAO or MMAO, all cobalt complexes exhibit catalytic activities toward ethylene. Polymerization takes place in the presence of MAO with activities of approximately 10(4) g of PE per (mol of Co) per h, but oligomerization occurs in the presence of MMAO with the activities higher by one order of magnitude. The resultant products, either polyethylenes or oligomers, display high linearity. Relatively low activities observed for cobalt complexes discussed reflect the importance of the appropriate spatial arrangement of the three donor nitrogen atoms.

http://dx.doi.org/10.1039/c5ra04722f