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   Interplay of Reversible Chain Transfer and Comonomer Incorporation Reactions in Coordination Copolymerization of Ethylene/1–Hexene  
   
نویسنده Ebrahimi Ali ,Ahmadjo Saeid ,Mohammadi Mohsen ,Mortazavi Mohammad Mahdi ,Ahmadi Mostafa
منبع Polyolefins Journal - 2020 - دوره : 7 - شماره : 1 - صفحه:1 -11
چکیده    Coordinative chain transfer polymerization (cctp) has opened a new path for the development of novel products like olefin block copolymers and chainend functional polyolefins. however, conflicting results are frequently reported on the catalyst performance including activity and comonomer selectivity under cctp conditions. here we have selected two catalysts including racethylenebis(1η5indenyl)zirconocene and bis(imino) pyridine iron, with drastically different comonomer affinities. the effect of diethyl zinc as the chain transfer agent (cta) on their individual performances is evaluated at different 1–hexene concentrations, in copolymerization with ethylene. combined thermal fractionation and gpc results confirm that not all chains experience the reversible transfer reaction. nevertheless, the metallocene catalyst shows twice activity and about 30% lower comonomer incorporation in the presence of cta. conversely, the late transition metal catalyst demonstrates lower activity and remains comonomer irresponsive. it could be concluded that, in addition to establishing a reversible transfer reaction, cta affects the nature of active centers. this finding can help designing olefin copolymers with a more defined chemical composition based on cctp reaction.
کلیدواژه Coordination Polymerization ,Reversible Chain Transfer Reaction ,Chemical Composition ,Microstructure
آدرس Amirkabir University Of Technology, Department Of Polymer Engineering And Color Technology, Iran, Iran Polymer And Petrochemical Institute, Engineering Department, Catalyst Group, Iran, Qom University Of Technology, Faculty Of Engineering, Department Of Polymer Engineering, Iran, Iran Polymer And Petrochemical Institute, Engineering Department, Catalyst Group, Iran, Amirkabir University Of Technology, Department Of Polymer Engineering And Color Technology, Iran. Johannes Gutenberg-UniversitäT Mainz, Institute Of Physical Chemistry, Germany
پست الکترونیکی mo.ahmadi@aut.ac.ir
 
     
   
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