Synthesis and characterization of polyolefin thermoplastic elastomers: A review

Author:

Sun Minghao1,Xiao Yangke1,Liu Kan1,Yang Xuan12,Liu Pingwei12,Jie Suyun1,Hu Jijiang1,Shi Shengbin2,Wang Qingyue2,Lim Khak Ho2ORCID,Liu Zhenxue3,Li Bo‐Geng1,Wang Wen‐Jun12ORCID

Affiliation:

1. State Key Laboratory of Chemical Engineering College of Chemical and Biological Engineering Zhejiang University Hangzhou People's Republic of China

2. Institute of Zhejiang University–Quzhou Quzhou People's Republic of China

3. Shandong Chambroad Holding Group Co., Ltd. Binzhou People's Republic of China

Abstract

AbstractPolyolefin thermoplastic elastomers (TPE‐Os) are high‐performance polyolefins consisting of both plastic and rubber phases. Compared with other thermoplastic elastomers, the TPE‐Os possess better chemical stability, transparency, re‐processability, and electrical insulation, which renders their broad applications possible. By manipulating chain structures and topologies of the TPE‐Os, differently structured polyolefins with improved thermal and mechanical properties have been developed, including ethylene and α‐olefin random copolymers (POEs), olefin block copolymers (OBCs), comb‐shaped polyolefin elastomers (CPOEs), and dynamically cross‐linked polyolefin elastomers. Herein, we review the synthesis of the POE, OBC, CPOE, and dynamical cross‐linked polyolefin elastomer, including the catalyst systems, polymerization techniques, processes, and kinetic modelling. The characterization of the TPE‐Os and the relationships between the TPE‐O chain structure, aggregated state, and product performance are discussed. The future development of higher‐performance TPE‐Os is envisaged.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

General Chemical Engineering

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