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Magnetic Polyurea Nano-Capsules Synthesized via Interfacial Polymerization in Inverse Nano-Emulsion

机译:通过反相纳米乳液中的界面聚合合成磁性聚脲纳米胶囊

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摘要

Polyurea (PU) nano-capsules have received voluminous interest in various fields due to their biocompatibility, high mechanical properties, and surface functionality. By incorporating magnetic nanoparticle (MNPs) into the polyurea system, the attributes of both PU and MNPs can be combined. In this work, we describe a facile and quick method for preparing magnetic polyurea nano-capsules. Encapsulation of ionic liquid-modified magnetite nanoparticles (MNPs), with polyurea nano-capsules (PU NCs) having an average size of 5–20 nm was carried out through interfacial polycondensation between amine and isocyanate monomers in inverse nano-emulsion (water-in-oil). The desired magnetic PU NCs were obtained utilizing toluene and triple-distilled water as continuous and dispersed phases respectively, polymeric non-ionic surfactant cetyl polyethyleneglycol/polypropyleneglycol-10/1 dimethicone (ABIL EM 90), diethylenetriamine, ethylenediamine diphenylmethane-4,4′-diisocyanate, and various percentages of the ionic liquid-modified MNPs. High loading of the ionic liquid-modified MNPs up to 11 wt% with respect to the dispersed aqueous phase was encapsulated. The magnetic PU NCs were probed using various analytical instruments including electron microscopy, infrared spectroscopy, X-ray diffraction, and nuclear magnetic spectroscopy. This unequivocally manifested the successful synthesis of core-shell polyurea nano-capsules even without utilizing osmotic pressure agents, and confirmed the presence of high loading of MNPs in the core.
机译:聚脲(PU)纳米胶囊因其生物相容性,高机械性能和表面功能而在各个领域引起了广泛关注。通过将磁性纳米颗粒(MNP)纳入聚脲系统,可以将PU和MNP的属性进行组合。在这项工作中,我们描述了一种制备磁性聚脲纳米胶囊的简便快捷的方法。通过反相纳米乳液中胺和异氰酸酯单体之间的界面缩聚,用平均粒径为5–20 nm的聚脲纳米胶囊(PU NC)进行离子液体改性磁铁矿纳米颗粒(MNP)的封装。 -油)。分别使用甲苯和三次蒸馏水分别作为连续相和分散相,聚合的非离子表面活性剂鲸蜡基聚乙二醇/聚丙二醇-10/1二甲硅油(ABIL EM 90),二亚乙基三胺,乙二胺二苯基甲烷-4,4'获得所需的磁性PU NC -二异氰酸酯和各种百分比的离子液体改性的MNP。相对于分散的水相,高至11重量%的离子液体改性的MNP的高负载被封装。使用各种分析仪器(包括电子显微镜,红外光谱,X射线衍射和核磁光谱)探测磁性PU NC。这明确表明即使不使用渗透压剂也可以成功合成核-壳聚脲纳米胶囊,并证实了核中MNP的高负载。

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