Branched polyethylenes attainable using thermally enhanced bis(imino)acenaphthene-nickel catalysts: Exploring the effects of temperature and pressure
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,Catalysis
Reference79 articles.
1. New Pd(II)- and Ni(II)-Based Catalysts for Polymerization of Ethylene and .alpha.-Olefins
2. Copolymerization of Ethylene and Propylene with Functionalized Vinyl Monomers by Palladium(II) Catalysts
3. New Nickel(II) Diimine Complexes and the Control of Polyethylene Microstructure by Catalyst Design
4. Designing polyethylenes of complex chain architectures via Pd–diimine-catalyzed “living” ethylene polymerization
5. Control of Polymer Topology by Chain-Walking Catalysts
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1. Congestion of steric and electronic factors in α-diimine nickel precatalysts for high-temperature ethylene polymerization in accessing direct PE elastomer;Journal of Molecular Structure;2024-11
2. Advances in the chemistry of redox-active bis(imino)acenaphthenes (BIAN): A case of transition metal complexes;Coordination Chemistry Reviews;2024-09
3. Amino‐containing α‐Diimine Nickel Complexes with Adjustable Electronic Properties and their Effective Use in Forming Highly Branched Polyethylene;Macromolecular Chemistry and Physics;2024-07-15
4. Catalytic Activity Prediction of α-Diimino Nickel Precatalysts toward Ethylene Polymerization by Machine Learning;Catalysts;2024-03-16
5. Bimodal and Highly Branched Polyethylenes Using Dual-Site Nickel Catalysts Supported on an Unsymmetrical BIAN-PI Compartmental Ligand Scaffold;Macromolecules;2024-01-26
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