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探索用于微流控生成聚合物微凝胶的直接注入方法。

Exploring a direct injection method for microfluidic generation of polymer microgels.

机构信息

Department of Chemistry, University of Toronto, Toronto, Ontario M5S 3H6, Canada.

出版信息

Lab Chip. 2013 Jul 7;13(13):2547-53. doi: 10.1039/c3lc41385c. Epub 2013 Feb 13.

DOI:10.1039/c3lc41385c
PMID:23407698
Abstract

Microfluidics (MFs) offers a promising method for the preparation of polymer microgels with exquisite control over their dimensions, shapes and morphologies. A challenging task in this process is the generation of droplets (precursors for microgels) from highly viscous polymer solutions. Spatial separation of MF emulsification and gelation of the precursor droplets on chip can address this challenge. In the present work, we explored the application of the "direct injection" method for the preparation of microgels by adding a highly concentrated polymer solution or a gelling agent directly into the precursor droplets. In the first system, primary droplets were generated from a dilute aqueous solution of agarose, followed by the injection of the concentrated agarose solution directly in the primary droplets. The secondary droplets served as precursors for microgels. In the second system, primary droplets were generated from the low-viscous solution of methyl-β-cyclodextrin and poly(ethylene glycol) end-terminated with octadecyl hydrophobic groups. Addition of surfactant directly into the primary droplets led to the binding of methyl-β-cyclodextrin to the surfactant, thereby releasing hydrophobized poly(ethylene glycol) to form polymer microgels. Our results show that, when optimized, the direct injection method can be used for microgel preparation from highly viscous liquids and thus this method expands the range of polymers used for MF generation of microgels.

摘要

微流控(MFs)为制备具有精细尺寸、形状和形态控制的聚合物微凝胶提供了一种很有前途的方法。在这个过程中,一个具有挑战性的任务是从高粘性聚合物溶液中生成液滴(微凝胶的前体)。在芯片上进行 MF 乳化和前体液滴凝胶的空间分离可以解决这个挑战。在本工作中,我们探索了通过直接将高浓度聚合物溶液或凝胶剂添加到前体液滴中来制备微凝胶的“直接注射”方法的应用。在第一个系统中,从琼脂糖的稀水溶液中生成初级液滴,然后将浓缩的琼脂糖溶液直接注入初级液滴中。次级液滴作为微凝胶的前体。在第二个系统中,从低粘度的甲基-β-环糊精和聚(乙二醇)溶液中生成初级液滴,该溶液的末端用十八烷基疏水基团封端。将表面活性剂直接添加到初级液滴中会导致甲基-β-环糊精与表面活性剂结合,从而释放出疏水化的聚(乙二醇)形成聚合物微凝胶。我们的结果表明,当优化时,直接注射法可用于从高粘性液体中制备微凝胶,因此该方法扩展了用于 MF 生成微凝胶的聚合物的范围。

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