Synthetic approaches for poly(phenylene) block copolymers via nickel coupling reaction for fuel cell applications

Nugraha, Adam F. and Kim, Songmi and Wijaya, Farid and Bae, Byungchan and Shin, Dongwon (2020) Synthetic approaches for poly(phenylene) block copolymers via nickel coupling reaction for fuel cell applications. Polymers, 12 (7): 1614. ISSN 20734360

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Abstract

Several methods to synthesize poly(phenylene) block copolymers through the nickel coupling reaction were attempted to reduce the use of expensive nickel catalysts in polymerization. The model reaction for poly(phenylene) having different types of dichlorobenzene derivative monomers illustrated the potential use of cost-effective catalysts, such as NiBr2 and NiCl2, as alternatives to more expensive catalysts (e.g., bis(1,5-cyclooctadiene)nickel(0) (Ni(COD)2)). By catalyzing the polymerization of multi-block poly(phenylene) with NiBr2 and NiCl2, random copolymers with similar molecular weights could be prepared. However, these catalysts did not result in a high-molecular-weight polymer, limiting their wide scale application. Further, the amount of Ni(COD)2 could be reduced in this study by approximately 50% to synthesize poly(phenylene) multi-block copolymers, representing significant cost savings. Gel permeation chromatography and nuclear magnetic resonance results showed that the degree of polymerization and ion exchange capacity of the copolymers were almost the same as those achieved through conventional polymerization using 2.5 times as much Ni(COD)2. The flexible quaternized membrane showed higher chloride ion conductivity than commercial Fumatech membranes with comparable water uptake and promising chemical stability.

Item Type: Article
Additional Information: https://assays.cancer.gov/CPTAC-317
Uncontrolled Keywords: anion-exchange membranes; ion conductivity; multi-block copolymer; nickel coupling reaction; poly(phenylene).
Subjects: Bidang Keilmuan > Chemical Process
Bidang Keilmuan > Chemical Materials
Bidang Keilmuan > Chemistry
Bidang Keilmuan > Electrochemical
Bidang Keilmuan > Electrical Engineering
Bidang Keilmuan > Electrochemical Technology
Bidang Keilmuan > Energy
Bidang Keilmuan > Fuel Cells
Jurnal
Bidang Keilmuan > Materials Engineering
Bidang Keilmuan > Teknik Elektro
Divisions: Pasca Sarjana > S2 Teknik Elektro
Depositing User: Yudha Formanto
Date Deposited: 04 Aug 2026 04:19
Last Modified: 04 Aug 2026 04:20
URI: https://repository.itpln.ac.id/id/eprint/6912

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