Structure-Property Relationships of 3D-Printable Chain-Extended Block Copolymers with Tunable Elasticity and Biodegradability

  • Kim, Ryung Il
  • Lee, Geonchang
  • Lee, Jung-Hyun
  • Park, Ji Jong
  • Lee, Albert S.
  • 외 1명
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10

초록

Elastomeric bioscaffolds with tunable elasticity and biodegradability were synthesized via ring opening polymerization of polycaprolactone (PCL) and polylactide (PLA) with a bifunctional polyethylene glycol macroinitiator, followed by chain extension with diisocyanate to form urethane linkages. Through fine tuning of the macroinitiator and PCL/PLA weight fraction and molecular weight, a data set of elastomeric bioscaffolds gives structure-property insights into their thermal, mechanical, and biodegradability properties as they relate to triblock copolymer composition and mechanical weight. These materials were targeted to be 3D-printed by commercial devices, and their unique rheological properties enable impeccable multiscale microstructure formation. Simplicity in synthesis and fabrication as well as tunable biodegradability (1 day to 2 months) and elasticity (modulus 32-94 MPa) suggest the vast wide-ranging utility and prospective application in bioscaffolds for future therapeutic treatments.

키워드

biodegradable polymersbioelastomer3D printingblock copolymerpolyurethaneCRYSTALLIZATION BEHAVIORPOLYCAPROLACTONEPOLYMERSDEGRADATIONBLENDSPCLCOMPOSITESCAFFOLDSBIOINKPLA
제목
Structure-Property Relationships of 3D-Printable Chain-Extended Block Copolymers with Tunable Elasticity and Biodegradability
저자
Kim, Ryung IlLee, GeonchangLee, Jung-HyunPark, Ji JongLee, Albert S.Hwang, Seung Sang
DOI
10.1021/acsapm.1c00860
발행일
2021-09-09
유형
Article
저널명
ACS Applied Polymer Materials
3
9
페이지
4708 ~ 4716