Structurally Tuned Citric Acid-Based Polyester Thermoset with Balanced Barrier, Durability, and Biodegradation Performance

  • Cho, Eunjung
  • Park, Seul-A
  • Seo, Jin Young
  • Park, Sung Bae
  • Baek, Seung-Ho
  • ... Park, Jeyoung
  • 외 5명
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초록

Conventional thermoset polymers play a vital role in high-performance applications. However, their reliance on nonrenewable resources and irreversible cross-linked structures hinders recycling, presenting significant sustainability and end-of-life challenges. In this study, a thermosetting polyester derived from citric acid, 1,4-cyclohexanedicarboxylic acid, and 1,4-cyclohexanedimethanol was developed to overcome both the ecological and recyclability limitations of its predecessor. This material exhibits high tensile strength (93 +/- 1.2 MPa) and maintains optical transparency (98.9 +/- 0.6%). Additionally, it has barrier properties, with oxygen and water vapor transmission rates of 0.2 cc m-2 d-1 and 2.9 g m-2 d-1, respectively. The network is also recyclable via hot-press induced transesterification as supported by consistent mechanical performance and preserved film integrity after reprocessing. Moreover, it is fully degradable under composting conditions, with over 90% degradation achieved within 6 weeks. By integrating renewable monomers into a robust yet degradable architecture, the synthesized polyester thermoset reduces its reliance on petroleum resources and carbon footprint. These findings demonstrate the potential of PCCC as a multifunctional thermoset for next-generation sustainable applications.

키워드

biodegradable thermosetshigh-performance materialsdurabilitypolyesterscross-linked networkFILMS
제목
Structurally Tuned Citric Acid-Based Polyester Thermoset with Balanced Barrier, Durability, and Biodegradation Performance
저자
Cho, EunjungPark, Seul-ASeo, Jin YoungPark, Sung BaeBaek, Seung-HoHwang, Dong KiPark, JeyoungOh, Dongyeop X.Shin, GiyoungJeon, HyeonyeolKoo, Jun Mo
DOI
10.1021/acssuschemeng.5c08559
발행일
2026-01
유형
Article
저널명
ACS Sustainable Chemistry and Engineering
14
2
페이지
943 ~ 955