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Composite tectocapsules containing porous polymer microspheres as release gates

机译:包含多孔聚合物微球作为释放门的复合技术胶囊

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Porous and amphiphilic polymer microspheres were incorporated into polyurea capsules in order to control the release of the core solvents independently of wall formation. While nonpolar poly(divinylbenzene-55) microspheres were simply encapsulated along with the xylene core solvent, the amphiphilic poly(divinylbenzene-55-alt-maleic anhydride) microspheres, as well as maleic acid functionalized poly(divinylbenzene-55) microspheres, became embedded at the polyurea-water interface. Release of xylene from these microcapsules into air was monitored at room temperature and 50 degrees C. Release profiles change significantly upon addition of amphiphilic porous microspheres, with the release rates scaling with microsphere loading. Scanning transmission X-ray spectromicroscopy (STXM) indicates that the polyurea is largely excluded from the pores of the microspheres.
机译:将多孔和两亲性聚合物微球掺入聚脲胶囊中,以独立于壁的形成来控制核心溶剂的释放。当非极性聚二乙烯基苯-55微球与二甲苯核心溶剂一起被简单封装时,两亲性聚二乙烯基苯-55-alt-顺丁烯二酸酐微球以及马来酸官能化的聚二乙烯基苯-55微球被包埋。在聚脲-水界面。在室温和50摄氏度下监测二甲苯从这些微胶囊向空气中的释放。添加两亲性多孔微球后,释放曲线会发生显着变化,释放速率随微球负载而定。扫描透射X射线光谱学(STXM)表明聚脲在很大程度上被排除在微球的孔之外。

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