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首页> 外文期刊>Chemistry: A European journal >Polymerizable Molecular Silsesquioxane Cage Armored Hybrid Microcapsules with In Situ Shell Functionalization
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Polymerizable Molecular Silsesquioxane Cage Armored Hybrid Microcapsules with In Situ Shell Functionalization

机译:具有原位壳功能化的可聚合分子倍半硅氧烷笼式铠装杂化微胶囊

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We prepared core-shell polymer-silsesquioxane hybrid microcapsules from cage-like methacryloxypropyl silsesquioxanes (CMSQs) and styrene (St). The presence of CMSQ can moderately reduce the interfacial tension between St and water and help to emulsify the monomer prior to polymerization. Dynamic light scattering (DLS) and TEM analysis demonstrated that uniform core-shell latex particles were achieved. The polymer latex particles were subsequently transformed into well-defined hollow nanospheres by removing the polystyrene (PS) core with 1:1 ethanol/cyclohexane. High-resolution TEM and nitrogen adsorption-desorption analysis showed that the final nanospheres possessed hollow cavities and had porous shells; the pore size was approximately 2-3nm. The nanospheres exhibited large surface areas (up to 486m(2)g(-1)) and preferential adsorption, and they demonstrated the highest reported methylene blue adsorption capacity (95.1mgg(-1)). Moreover, the uniform distribution of the methacryloyl moiety on the hollow nanospheres endowed them with more potential properties. These results could provide a new benchmark for preparing hollow microspheres by a facile one-step template-free method for various applications.
机译:我们从笼状甲基丙烯酰氧基丙基倍半硅氧烷(CMSQs)和苯乙烯(St)制备了核-壳型聚合物-倍半硅氧烷杂化微胶囊。 CMSQ的存在可以适度降低St和水之间的界面张力,并有助于在聚合之前乳化单体。动态光散射(DLS)和TEM分析表明,获得了均匀的核-壳胶乳颗粒。随后通过用1:1乙醇/环己烷除去聚苯乙烯(PS)核,将聚合物胶乳颗粒转变为轮廓分明的空心纳米球。高分辨率的TEM和氮吸附-解吸分析表明,最终的纳米球具有中空的空腔并具有多孔的壳。孔径约为2-3nm。纳米球展现出大的表面积(最大486m(2)g(-1))和优先吸附,并且它们显示出最高的报告亚甲基蓝吸附容量(95.1mgg(-1))。而且,甲基丙烯酰基部分在中空纳米球上的均匀分布赋予它们更多的潜在性能。这些结果可以为通过简便的无步骤模板化方法用于各种应用制备空心微球提供新的基准。

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