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Preparation of half- and post-metallocene hafnium complexes with tetrahydroquinoline and tetrahydrophenanthroline frameworks for olefin polymerizationoa mark
  • Baek, Jun Won ;
  • Kwon, Su Jin ;
  • Lee, Hyun Ju ;
  • Kim, Tae Jin ;
  • Ryu, Ji Yeon ;
  • Lee, Junseong ;
  • Shin, Eun Ji ;
  • Lee, Ki Soo ;
  • Lee, Bun Yeoul
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Publication Year
2019-01-01
Publisher
MDPI AG
Citation
Polymers, Vol.11
Keyword
Coordinative chain transfer polymerizationHafnium complexHalf-metalloceneOlefin polymerizationPost-metallocene
Mesh Keyword
Chain transfer polymerizationComonomer incorporationHafnium complexesMetallocene complexesOlefin polymerizationPost-metallocenePost-metallocene catalystsTetrahydroquinoline
All Science Classification Codes (ASJC)
Chemistry (all)Polymers and Plastics
Abstract
Hafnium complexes have drawn attention for their application as post-metallocene catalysts with unique performance in olefin polymerization. In this work, a series of half-metallocene HfMe2 complexes, bearing a tetrahydroquinoline framework, as well as a series of [Namido,N,Caryl]HfMe2-type post-metallocene complexes, bearing a tetrahydrophenanthroline framework, were prepared; the structures of the prepared Hf complexes were unambiguously confirmed by X-ray crystallography. When the prepared complexes were reacted with anhydrous [(C18H37)2N(H)Me]+[B(C6F5)4]-, desired ion-pair complexes, in which (C18H37)2NMe coordinated to the Hf center, were cleanly afforded. The activated complexes generated from the half-metallocene complexes were inactive for the copolymerization of ethylene/propylene, while those generated from post-metallocene complexes were active. Complex bearing bulky isopropyl substituents (12) exhibited the highest activity. However, the activity was approximately half that of the prototype pyridylamido-Hf Dow catalyst. The comonomer incorporation capability was also inferior to that of the pyridylamido-Hf Dow catalyst. However, 12 performed well in the coordinative chain transfer polymerization performed in the presence of (octyl)2Zn, converting all the fed (octyl)2Zn to (polyolefinyl)2Zn with controlled lengths of the polyolefinyl chain.
ISSN
2073-4360
Language
eng
URI
https://dspace.ajou.ac.kr/dev/handle/2018.oak/30799
DOI
https://doi.org/10.3390/polym11071093
Fulltext

Type
Article
Funding
Funding: This work was supported by LG and by the Commercialization Promotion Agency for R&D Outcomes (COMPA) funded by the Ministry of Science and ICT (MSIT) and by a grant from Priority Research Centers Program (2019R1A6A1A11051471) funded by the National Research Foundation of Korea (NRF).
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Department of Applied Chemistry & Biological Engineering
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