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A continuous RESS process to prepare PLA–PEG–PLA microparticles

机译:连续的RESS过程制备PLA-PEG-PLA微粒

摘要

A continuous RESS (rapid expansion of supercritical solution) process that combines an SEDS (solution enhanced dispersion by supercritical fluids) process and RESS process was developed to prepare the microparticles of polylactide–poly(ethylene glycol)–polylactide (PLA–PEG–PLA) triblock copolymer. The resulting microparticles exhibited a spherical shape and a narrow particle size distribution with a mean particle size of 2.2 μm. After supercritical processing, the results of Fourier transform infrared spectroscopy (FTIR) measurement indicated that the minor structural changes occurred on a molecular level; X-ray powder diffraction (XRPD) analysis revealed that the physical state of the copolymer shifted into an amorphous form; and the thermogravimetry-differential scanning calorimetry (TG-DSC) measurements demonstrated the increases in fusion temperature and decomposition temperature of the copolymer from 135.8 °C to 180.6 °C and 342.9 °C to 372.0 °C, respectively. The results indicate that the continuous RESS process could overcome the drawbacks of SEDS and RESS processes when processing the supercritical CO2 partially soluble polymers and recrystallize such polymers continuously and constantly, which would widen the application of supercritical technologies in the treatment of polymers.
机译:开发了将SEDS(通过超临界流体提高溶液分散性)工艺和RESS工艺相结合的连续RESS(超临界溶液的快速膨胀)工艺,以制备聚丙交酯-聚乙二醇-聚丙交酯(PLA-PEG-PLA)的微粒三嵌段共聚物。所得的微粒表现出球形和窄的粒度分布,平均粒度为2.2μm。经过超临界处理后,傅立叶变换红外光谱(FTIR)的测量结果表明,微小的结构变化发生在分子水平上。 X射线粉末衍射(XRPD)分析表明,共聚物的物理状态转变为无定形形式。热重-差示扫描量热法(TG-DSC)测量表明,共聚物的熔融温度和分解温度分别从135.8°C升高至180.6°C和342.9°C升高至372.0°C。结果表明,连续的RESS工艺可以克服SEDS和RESS工艺在处理超临界CO2部分可溶聚合物时的缺点,并使这种聚合物连续不断地重结晶,这将拓宽超临界技术在聚合物处理中的应用。

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