Enhancing isoprene polymerization with high activity and adjustable monomer enchainment using cyclooctyl-fused iminopyridine iron precatalysts.

Dalton Trans

Key Laboratory of Engineering Plastics and Beijing National Laboratory for Molecular Science, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.

Published: January 2024

In this study, a series of structurally rigid cyclooctyl-fused iminopyridine iron complexes, [LFeCl][FeCl] and [2LFe][Cl][3FeCl], was synthesized a one-pot method and investigated as precatalysts in conjunction with methylaluminoxane for isoprene (Ip) polymerization. Combined characterization through FTIR analysis, elemental analysis and single crystal XRD analysis fully verified the structure of these complexes. The most active iron complex, FeH, exhibited a trisligated nature, with its cation adopting an octahedral geometry around the metal center. In contrast, all the other iron complexes (Fe2Me, Fe2Et, Fe2iPr, Fe3Me, Fe2Et,Me) displayed bisligated configurations, with distorted trigonal bipyramidal geometry of cations. During isoprene polymerization, the extent of steric hindrance of the ligand framework exerted a significant impact on catalytic performance. The FeH precatalyst with less steric hindrance demonstrated excellent performance, producing high molecular weight polyisoprenes with conversions exceeding 99% for 4000 equiv. of monomer. Even at very low catalyst loadings, as low as 0.0025 mol% (Fe/Ip), the polymerization of isoprene could proceed smoothly with an exceptionally high activity of 4.0 × 10 g (mol, h). Moreover, this precatalyst exhibited good thermal stability, maintaining high activity levels (typically 10 g (mol, h)) across a broad temperature range from -20 °C to 100 °C. Additionally, by adjusting steric substituents and the reaction temperature, the 1,4/3,4 regioselectivity could be modulated from 9/91 to 69/31 while maintaining a high stereoselectivity of -1,4 structures (/: >99/1).

Download full-text PDF

Source
http://dx.doi.org/10.1039/d3dt03674jDOI Listing

Publication Analysis

Top Keywords

isoprene polymerization
12
high activity
12
cyclooctyl-fused iminopyridine
8
iminopyridine iron
8
iron complexes
8
steric hindrance
8
maintaining high
8
high
5
enhancing isoprene
4
polymerization
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!