Bio-Degradable Polyesters with Rigid Cyclic Diester from Camphor and Tartaric Acid

  • Kang, Ju Hui
  • Sim, Su Ji
  • Lee, Joon Hyuk
  • Lee, Sangkug
  • Suh, Dong Hack
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초록

Despite their excellent, useful, and stable properties, thermoplastics are constantly subject to environmental risks because of their low degradability under thermal, chemical, and mechanical stresses. To overcome the aforementioned issues, we hereby introduce an eco-friendly camphor (Ct) cyclic diester. The Ct diester is designed as a monomer, including a ketal group from the Ct, and shows high thermal stability via a rigid spiro-ring and a bridged bicyclic structure. A series of polyester was synthesized using the Ct diester, including various types of diols and dimethyl terephthalate. PETxCty copolyesters showed appropriate thermal stability up to 414 degrees C and a high glass transition temperature. This thermal behavior led to amorphous regions as the Ct diester content increased. Regarding the proportion of the Ct diester in the polyester, it was sensitive to hydrolysis and contributed to the degradation of the polyester in acid buffer conditions.

키워드

PolyestersBiodegradabilityCyclic diesterCamphorTartaric acidPOLY(ETHYLENE-TEREPHTHALATE) COPOLYESTERSDIOLPETCOPOLYMERIZATIONHYDROLYSIS
제목
Bio-Degradable Polyesters with Rigid Cyclic Diester from Camphor and Tartaric Acid
저자
Kang, Ju HuiSim, Su JiLee, Joon HyukLee, SangkugSuh, Dong Hack
DOI
10.1007/s10924-022-02439-9
발행일
2022-08
유형
Article; Early Access
저널명
Journal of Polymers and the Environment
30
8
페이지
3463 ~ 3473