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March 25, 2026Macromolecules0 citations

CO 2 -Based Polyalkenamer- g -Polycarbonate Graft Copolymers: One-Step Synthesis and Application as Highly Effective Polyolefin/Polycarbonate Compatibilizers

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WWWei WeiSCSijia ChenWXWei Xie

Key Points

  • The aim is to synthesize a new graft copolymer to improve compatibility between biodegradable PPC and traditional polyolefins.
  • One-step polymerization to create polyalkenamer-g-polycarbonate graft copolymers.
  • Assessment of compatibilization in blends of PPC with HDPE and iPP.
  • Evaluation of mechanical properties including elongation at break and tensile strength.
  • The graft copolymer enhanced elongation at break in HDPE/PPC and iPP/PPC blends.
  • Tensile strength increased up to 18-fold for HDPE and 23-fold for iPP blends with the copolymer added.
  • Achieved a maximum molecular weight of 480 kg mol–1 for the synthesized copolymer.

Abstract

Integrating emerging biodegradable CO2-based poly(propylene carbonate) (PPC) with commodity polyolefins, the most widely used traditional plastics, to explore their mechanical recycling is highly significant as it not only promotes the circular economy but also fuels the large-scale development of PPC itself. However, their inherent thermodynamic incompatibility, stemming from distinct chemical structures and polarities, remains a critical barrier. Herein, we introduce a potent compatibilizer, which is a polyalkenamer-g-polycarbonate graft copolymer synthesized through a facile and efficient one-step polymerization to effectively bridge this immiscible interface between PPC with polyolefins including high-density polyethylene (HDPE) and isotactic polypropylene (iPP). This one-step strategy allows a diverse design of polyalkenamer backbones and polycarbonate side chains, with adjustable lengths and a maximum molecular weight of 480 kg mol–1. Adding 2 wt % of this graft copolymer to HDPE/PPC or iPP/PPC blends simultaneously enhances both elongation at break and tensile strength, boosting tensile toughness to 18-fold and 23-fold, respectively.

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Cite This Study

Wei et al. (2026) studied this question.

synapsesocial.com/papers/69c37afeb34aaaeb1a67d02fhttps://doi.org/10.1021/acs.macromol.5c03196
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