A facile method to fabricate thermally stable methacrylate‐terminated oligo(2,6‐dimethyl‐1,4‐phenylene oxide)/benzoxazine thermosetting resins with low dielectric constants and losses at 10 GHz

Author:

Zeng Ming12ORCID,Tan Dengru2,Feng Zijian3,Luo Haoyu2,Lu Xiang2,Zhou Yang4,Shen Yufang5,Liu Faxi5,Xu Qingyu5

Affiliation:

1. Engineering Research Center of Nano‐Geomaterials of Ministry of Education China University of Geosciences Wuhan People's Republic of China

2. Faculty of Materials Science and Chemistry China University of Geosciences Wuhan People's Republic of China

3. Faculty of Packaging and Materials Engineering Hunan University of Technology Zhuzhou People's Republic of China

4. CAS Key Laboratory of High‐Performance Synthetic Rubber and its Composite Materials, Changchun Institute of Applied Chemistry Chinese Academy of Science Changchun People's Republic of China

5. Huaibei Oasis New Materials Co. Ltd. Huaibei People's Republic of China

Abstract

AbstractPoly(2,6‐dimethyl‐1,4‐phenylene oxide) (PPO) as a kind of low dielectric polymer has been applied in telecommunications. However, developing PPO based thermosetting resins with good comprehensive properties is highly challenging. Herein, an interpenetrating polymer network (IPN) design strategy for the preparation of methacrylate‐terminated oligo(2,6‐dimethyl‐1,4‐phenylene oxide) (SA9000) based thermosetting resins is presented. Two series of prepolymers are prepared by blending bisphenol A/furfurylamine benzoxazine (B‐f) or bisphenol A/aniline benzoxazine (B‐a) with SA9000. Then the IPN films are fabricated by the programmed temperature rising method with simultaneous polymerization reactions of both SA9000 and benzoxazines. Owing to the intermolecular interactions between SA9000 and benzoxazines, the polymerization peak temperatures of all prepolymers are lower than those of SA9000 and benzoxazines. In comparison with B‐a based films, B‐f/SA9000 films display better miscibility and higher thermal resistances over the entire composition range, due to the strengthened hydrogen bonding and higher cross‐linking density resulting from the presence of furan ring of B‐f. Specifically, B‐f/SA9000 films possess the advantages of low dielectric constants (2.296–2.475) and low‐loss grade dielectric losses (0.00550–0.00683) at 10 GHz. The current work provides a simple and effective path for the fabrication of high‐performance thermosetting PPO resins based on benzoxazine chemistry and IPN structure design.

Publisher

Wiley

Subject

Materials Chemistry,Polymers and Plastics,Surfaces, Coatings and Films,General Chemistry

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