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March 23, 2026ACS Applied Polymer Materials1 citations

Synthesis and Properties of Poly(ethylene dodecanedioate)/Poly(dimethylsiloxane) and Poly(butylene dodecanedioate)/Poly(dimethylsiloxane) Copolymers: Synergistically Enhanced Mechanical Properties, Hydrophobicity, and Antifouling Performance

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LHLongjiang HuangHSHaritz SardónGCGenyang Cao

Key Points

  • This research aims to enhance the mechanical and functional properties of biodegradable polyesters using PDMS copolymerization.
  • Synthesize poly(ethylene dodecanedioate)/PDMS and poly(butylene dodecanedioate)/PDMS copolymers
  • Test mechanical properties including elongation at break and impact strength
  • Evaluate hydrophobicity through contact angle measurements
  • Elongation at break increased from 355% for PEDP0 to 534% for PEDP4
  • Impact strength improved from 259 J/m to 369 J/m
  • Contact angle increased from 75° for PEDP0 to 97°, indicating enhanced hydrophobicity

Abstract

Traditional nonbiodegradable plastics pose significant environmental hazards, whereas biodegradable plastics are free from these drawbacks. Poly(butylene dodecanedioate) (PBD) and Poly(ethylene dodecanedioate) (PED) exhibits well-rounded properties comparable to polyethylene (PE) while being biodegradable. However, its practical application is hindered by several limitations, including limited functionality and insufficient mechanical strength. To address these issues, this study incorporated polydimethylsiloxane (PDMS) as a block to synthesize a polyester-PDMS copolymer (PBDP and PEDP), thereby enhancing its performance and functionality. The introduction of flexible PDMS segments was found to significantly improve the mechanical properties of the material, with the elongation at break increasing from 355% for PEDP0 to 534% for PEDP4, and the impact strength improving from 259 J/m to 369 J/m. Owing to its low surface energy, PDMS enriches the material surface, endowing the synthesized block copolymer with enhanced antifouling and hydrophobic properties, as evidenced by an increase in the contact angle from 75° for PEDP0 to 97°. These improvements significantly broaden the application potential of PED-based materials. Given the minimal differences in structure and postmodification between PBD and PED, this paper primarily uses PED as the representative case for analysis. Relevant data and figures for PBD are available in the Supporting Information.

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Cite This Study

Huang et al. (2026) studied this question.

synapsesocial.com/papers/69c0df0bfddb9876e79c151ehttps://doi.org/10.1021/acsapm.6c00428
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