Back to Search Start Over

Covalent Organic Framework‐Supported Metallocene for Ethylene Polymerization.

Authors :
Zhu, Bangban
Liu, Kan
Luo, Liqiong
Zhang, Ziyang
Xiao, Yangke
Sun, Minghao
Jie, Suyun
Wang, Wen‐Jun
Hu, Jijiang
Shi, Shengbin
Wang, Qingyue
Li, Bo‐Geng
Liu, Pingwei
Source :
Chemistry - A European Journal. 9/26/2023, Vol. 29 Issue 54, p1-10. 10p.
Publication Year :
2023

Abstract

The loading of homogeneous catalysts with support can dramatically improve their performance in olefin polymerization. However, the challenge lies in the development of supported catalysts with well‐defined pore structures and good compatibility to achieve high catalytic activity and product performance. Herein, we report the use of an emergent class of porous material—covalent organic framework material (COF) as a carrier to support metallocene catalyst—Cp2ZrCl2 for ethylene polymerization. The COF‐supported catalyst demonstrates a higher catalytic activity of 31.1×106 g mol−1 h−1 at 140 °C, compared with 11.2×106 g mol−1 h−1 for the homogenous one. The resulting polyethylene (PE) products possess higher weight‐average molecular weight (Mw) and narrower molecular weight distribution (Ð) after COF supporting, that is, Mw increases from 160 to 308 kDa and Ð drops from 3.3 to 2.2. The melting point (Tm) is also increased by up to 5.2 °C. Moreover, the PE product possesses a characteristic filamentous microstructure and demonstrates an increased tensile strength from 19.0 to 30.7 MPa and elongation at break from 350 to 1400 % after catalyst loading. We believe that the use of COF carriers will facilitate the future development of supported catalysts for highly efficient olefin polymerization and high‐performance polyolefins. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09476539
Volume :
29
Issue :
54
Database :
Academic Search Index
Journal :
Chemistry - A European Journal
Publication Type :
Academic Journal
Accession number :
172368705
Full Text :
https://doi.org/10.1002/chem.202300913