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首页> 外文期刊>Polymer: The International Journal for the Science and Technology of Polymers >A novel fabrication of poly(#epsilon#-caprolactone) microspheres from blends of poly(#epsilon#-caprolactone) and poly(ethylene glycol)s
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A novel fabrication of poly(#epsilon#-caprolactone) microspheres from blends of poly(#epsilon#-caprolactone) and poly(ethylene glycol)s

机译:由聚(ε-己内酯)和聚乙二醇的混合物制备聚(ε-己内酯)微球的新方法

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摘要

A novel method for the preparation of solvent-free poly(#epsilon#-caprolactone) (PCL) microspheres from PCL/poly(ethylene glycol) (PEG) blends was developed and demonstrated. The particle size of the PCL spheres are in the range of 1 to 20 #mu#m (mostly in the range 5-10 #mu#m). The influences of the molecular weight of PCL, the molecular weight of PEG, the type of emulsifier, the concentration of plasticizer, the homogenization time and temperature on the characteristics of the PCL microparticles were also investigated. No changes in PCL molecular weight distribution and peak shape were observed, which indicates that the PCL matrix is stable during the fabrication process. However, the microspheres made from low-molecular-weight PCL coalesced into a continuous mass on drying and lost their properties as individual spheres. The surface of the PCL microspheres prepared from PEG 300 as the external phase at 70 deg C is much smoother than that of the other formulations. The major advantage of this polymer-blend melt technique compared with traditional methods for microsphere preparation is the elimination of methylene chloride or other organic solvents for polymer solubilization. Therefore, the toxicity associated with organic solvent residues resulting from conventional solvent preparation of microspheres is not present with this polymer-blend melt technique.
机译:从PCL /聚乙二醇(PEG)共混物中制备无溶剂聚(ε-己内酯)(PCL)微球的新方法得到了开发和验证。 PCL球的粒径在1到20#mu#m的范围内(大部分在5-10#mu#m的范围内)。还研究了PCL的分子量,PEG的分子量,乳化剂的类型,增塑剂的浓度,均质化的时间和温度对PCL微粒特性的影响。没有观察到PCL分子量分布和峰形的变化,这表明PCL基质在制造过程中是稳定的。但是,由低分子量PCL制成的微球在干燥时会聚结成连续的团块,并且失去了它们作为单个球的特性。由PEG 300作为外相在70摄氏度下制备的PCL微球的表面比其他制剂的表面光滑得多。与传统的微球制备方法相比,这种聚合物共混物熔融技术的主要优势在于消除了二氯甲烷或其他有机溶剂,可实现聚合物增溶。因此,这种聚合物混合熔融技术不存在与常规溶剂制备微球有关的有机溶剂残留相关的毒性。

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