Poly(ethylene glycol)-poly(L-lactide) diblock and triblock copolymers were prepared by ring-opening polymerization of L-lactide with poly(ethylene glycol) methyl ether or with poly(ethylene glycol) in the presence of stannous octoate. Molecular weight, thermal properties, and crystalline structure o
Fabrication of Poly(L-lactide)-block-Poly(ethylene glycol)-block-Poly(L-lactide) Triblock Copolymer Thin Films with Nanochannels: An AFM Study
✍ Scribed by Sung-Wook Choi; Yongwoo Kim; In Woo Cheong; Jung-Hyun Kim
- Publisher
- John Wiley and Sons
- Year
- 2008
- Tongue
- English
- Weight
- 406 KB
- Volume
- 29
- Category
- Article
- ISSN
- 1022-1336
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✦ Synopsis
Abstract
This paper aims to report the fabrication of biodegradable thin films with micro‐domains of cylindrical nanochannels through the solvent‐induced microphase separation of poly(L‐lactide)‐block‐poly(ethylene glycol)‐block‐poly(L‐lactide) (PLA‐b‐PEG‐b‐PLA) triblock copolymers with different block ratios. In our experimental scope, an increase in each of the block lengths of the PLA and PEG blocks led to both a variation in the average number density (146 to 32 per 100 µm^2^) and the size of the micro‐domains (140 to 427 nm). Analyses by atomic force microscopy (AFM) and fluorescence microscopy indicated that the hydrophilic PEG nanochannels were dispersed in the PLA matrix of the PLA‐b‐PEG‐b‐PLA films. We demonstrated that the micro‐domain morphology could be controlled not only by the block length of PEG, but also by the solvent evaporation conditions.
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## SYNOPSIS Blends of poly(L-lactide) (PLLA) and poly(e-caprolactone) (PCL) were prepared in a corotating twin screw miniextruder (40 rpm, 200"). It was attempted to prepare multiblock copolymers by allowing a controlled number of transesterification reactions. Various catalysts (n-Bu,SnOMe, Sn(Oc
## Abstract **Summary:** To explore the potential of a star‐shaped 8‐armed poly(ethylene glycol)35K‐__block__‐poly(L‐lactide)37K (8‐armed PEG35K‐__b__‐PLLA37K: $\overline M \_{\rm n}$ of PEG = 35 000, $\overline M \_{\rm n}$ of PLLA = 37 000) film as a novel bioabsorbable adhesion‐prevention membra
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