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Vinyl Addition Polymerization of Norbornene Derivatives by Palladium(II) Catalytic System: Comparison of In Situ Versus Complex Catalystsopen access

Authors
Nguyen, Nhi Thi XuanNayab, SairaYoon, MinyoungLee, HyosunLee, Sang-Ho
Issue Date
Oct-2025
Publisher
John Wiley and Sons Ltd
Keywords
Catalyst Activity; Geometry; Indium Compounds; Niobium Compounds; Palladium Compounds; Polymerization; Polyvinyl Acetates; Synthesis (chemical); Addition Polymerization; Catalytic Performance; Catalytic System; Co Catalysts; Complex Catalysts; Norbornene Derivatives; Norbornenes; Systems Comparison; Tetrakis; Vinyl-addition Polymerization; Ligands
Citation
Applied Organometallic Chemistry, v.39, no.10
Indexed
SCIE
SCOPUS
Journal Title
Applied Organometallic Chemistry
Volume
39
Number
10
URI
https://scholarworks.dongguk.edu/handle/sw.dongguk/61587
DOI
10.1002/aoc.70383
ISSN
0268-2605
1099-0739
Abstract
In this study, 2-(piperidin-1-ylmethyl)quinoline (L<inf>A</inf>) and 1-(naphthalen-2-ylmethyl)piperidine (L<inf>B</inf>) ligands were utilized alongside palladium(II) acetate [Pd(OAc)<inf>2</inf>] and N,N-Dimethylanilinium tetrakis (pentafluorophenyl)borate as a cocatalyst for the in situ addition polymerization of norbornene (NB). The ligand L<inf>B</inf> system demonstrated superior catalytic performance compared with that of the ligand L<inf>A</inf> system, achieving 99% versus 94% conversion for NB to polynorbornene (PNB) at 25°C in chlorobenzene. To validate the catalytic activities of these in situ catalytic systems, Pd (II) complexes, [L<inf>A</inf>Pd(OAc)<inf>2</inf>] and [L<inf>B</inf>Pd(μ-OAc)]<inf>2</inf>, were synthesized and characterized. X-ray structure analysis revealed that [L<inf>A</inf>Pd(OAc)<inf>2</inf>] adopted a square planar geometry, whereas [L<inf>B</inf>Pd(μ-OAc)]<inf>2</inf> exhibited a distinctive clamshell structure. These complexes were also employed for the vinyl addition polymerization of NB under the same conditions as in situ catalytic systems. The active real Pd(II) complexes demonstrated slightly lower conversions compared with those of the in situ catalytic systems, achieving over 90% conversions for both [L<inf>A</inf>Pd(OAc)<inf>2</inf>] and [L<inf>B</inf>Pd(μ-OAc)]<inf>2</inf>. Furthermore, both catalytic systems were subsequently used for the (co)polymerization of NB and its derivatives, such as 5-butylbicyclo[2.2.1]hept-2-ene (Bu-NB), methyl bicyclo[2.2.1]hept-5-ene-2-carboxylate (Me-NB), and bicyclo[2.2.1]hept-5-en-2-ylmethyl acetate (AAc-NB), yielding relatively lower conversions. © 2025 Elsevier B.V., All rights reserved.
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