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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Facile Production of Biodegradable Bipolymer Patchy and Patchy Janus Particles with Controlled Morphology by Microfluidic Routes
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Facile Production of Biodegradable Bipolymer Patchy and Patchy Janus Particles with Controlled Morphology by Microfluidic Routes

机译:可生物降解的二聚体斑块和斑驳的janus颗粒的含量通过微流体途径进行控制形态

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Patchy and patchy Janus particles composed of poly((DL)-lactic acid) (PLA) and polycaprolactone (PCL) regions were produced with a controlled size, patchiness, composition, and shape anisotropy by microfluidic emulsification and solvent evaporation. Isotropic particles composed of PCL patches embedded in the PLA matrix were produced from relatively small drops with a diameter of 14-25 mu m because of the fast solvent extraction as a result of high interfacial area of the particles. Anisotropic patchy Janus particles were formed from large drops, 100-250 mu m in diameter. A higher degree of polymer separation was achieved using a higher ratio of dichloromethane to ethyl acetate in the organic phase because of the more pronounced patch coarsening via Ostwald ripening. Janus particles with two fully separated polymer compartments were produced by in situ microfluidic mixing of two separate polymer streams within the formed droplets. The advantage of in situ micromixing is that the particle morphology can be changed continuously in a facile manner during drop generation by manipulating the organic stream flow rates. PCL and PLA domains within the particles were visualized by confocal laser scanning microscopy because of the preferential adsorption of rhodamine 6G dye onto PLA domains and higher binding affinity of Nile red toward PCL.
机译:聚((DL) - 乳酸)(PLA)和聚己内酯构成的片状和片状的Janus颗粒产生具有受控的尺寸,斑块,组成和形状各向异性通过微流体乳化和溶剂蒸发(PCL)的区域。由于颗粒的高界面面积,由直径为14-25μm的相对小的滴度,由直径为14-25μm的相对小的滴加产生各向同性颗粒。各向异性斑块janus颗粒由大滴形成,直径为100-250μm。使用较高比例的二氯甲烷与有机相中的乙酸乙酯的比例达到更高程度的聚合物分离,因为通过OSTWALD成熟更加明显的蛋白腐蚀性更明显。用两个完全分离的聚合物隔室的Janus颗粒通过在形成的液滴内的两种单独的聚合物流中原位微流体混合制备。原位微混凝的优点是通过操纵有机流流程期间可以在落后的脱落过程中以容易方式连续地改变颗粒形态。颗粒内的PCL和PLA结构域通过共聚焦激光扫描显微镜观察,因为Rhodamine 6g染料的优先吸附在PLA结构域和尼罗红朝向PCL的更高结合亲和力。

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