A Highly Transparent Thermoplastic Synthesized from Ethylene that Melts Above 200 °C

F Fabian Lukas (Lehrstuhl für Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre University of Bayreuth Bayreuth 95440 Germany) A Andre Dickert (Lehrstuhl für Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre University of Bayreuth Bayreuth 95440 Germany) W Winfried P. Kretschmer (Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre Universität Bayreuth Universitätsstraße 30 NW I Bayreuth D‐95440) R Rhett Kempe (Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre Universität Bayreuth Universitätsstraße 30 NW I Bayreuth D‐95440)

Abstract

AbstractPolyolefin‐based thermoplastics are the most widely used polymers and produced in megaton scale. Their applicability depends strongly on the melting point, and a high‐melting ethylene‐based plastic would be highly desirable. Herein, we report the synthesis of isotactic poly(4‐ethylhex‐1‐ene) (P4EH), a highly transparent and ethylene‐based thermoplastic that melts above 220 °C and has an extremely low density. Molecular catalysts were used to synthesize atactic, syndiotactic, and isotactic P4EH with narrow molecular weight distributions. Ziegler–Natta catalysts were used to synthesize isotactic and processable P4EH. Processable i‐P4EH was used to produce discs, and a transmittance of 92%, a haze of 8% and a clarity of 92% were measured. In addition, a density of 0.86 g cm−3 was observed.

Article Details

Volume / Issue Vol. 64, Issue 40
Published September 26, 2025
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (4)

F

Fabian Lukas

Lehrstuhl für Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre University of Bayreuth Bayreuth 95440 Germany

A

Andre Dickert

Lehrstuhl für Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre University of Bayreuth Bayreuth 95440 Germany

W

Winfried P. Kretschmer

Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre Universität Bayreuth Universitätsstraße 30 NW I Bayreuth D‐95440

R

Rhett Kempe

Anorganische Chemie II–Katalysatordesign, Sustainable Chemistry Centre Universität Bayreuth Universitätsstraße 30 NW I Bayreuth D‐95440