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Methacrylate-based polymer foams with controllable connectivity, pore shape, pore size and polydispersity

机译:甲基丙烯酸酯的聚合物泡沫,可控制的连通性,孔径,孔径和多分散性

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摘要

Polymer foams are becoming increasingly important in industry, especially biodegradable polymer foams are in demand. Depending on the application, polymer foams need to have characteristic properties, which include connectivity and polydispersity. We show how polymer foams with tailor-made structures can be synthesized from water-in-monomer emulsions which were generated via microfluidics. As monomer we used 1,4-butanediol dimethacrylate (1,4-BDDMA). Firstly, we synthesised monodisperse open- and closed-cell poly(1,4-BDDMA) foams with either spherical or hexagonal pore shapes by varying the locus of initiation. Secondly, we were able to control the pore diameters and obtained polymer foams of both connectivities and pore shapes with pore sizes from similar to 70 mu m up to similar to 120 mu m by means of one microfluidic chip. Finally, we synthesized poly(1,4-BDDMA) foams with controllable polydispersity. Here, the mean droplet diameter was the same as that of the monodisperse counterparts in order to be able to compare the properties of the resulting polymer foams.
机译:聚合物泡沫在工业中越来越重要,特别是可生物降解的聚合物泡沫需求。根据施用,聚合物泡沫需要具有特征性,包括连接性和多分散性。我们展示了通过通过微流体产生的单体乳液来合成具有量身定制的结构的聚合物泡沫。作为单体,我们使用1,4-丁二醇二甲基丙烯酸酯(1,4-BDDMA)。首先,通过改变引发基因座,我们用球形或六边形孔形状合成单分散的开放和闭孔聚(1,4-BDDMA)泡沫。其次,我们能够控制孔径,并获得与一个微流体芯片类似于类似于70μm的孔径和孔径的聚合物泡沫。最后,我们合成具有可控多分散性的聚(1,4-BDDMA)泡沫。这里,平均液滴直径与单分散对应物的平均直径相同,以便能够比较所得聚合物泡沫的性质。

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