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首页> 外文期刊>Progress in Organic Coatings: An International Review Journal >Influence of the emulsifying system to obtain linseed oil-filled microcapsules with a robust poly (melamine-formaldehyde)-based shell
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Influence of the emulsifying system to obtain linseed oil-filled microcapsules with a robust poly (melamine-formaldehyde)-based shell

机译:乳化体系的影响利用鲁棒聚(三聚氰胺 - 甲醛)基壳的亚麻籽油填充微胶囊

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In the present study, PMF-based microcapsules (MCs) containing linseed oil were synthesized via a two-stage in situ polymerization method. As shell material was synthesized, micrometric spherical PMF particles, which could be mistaken for microcapsules, were isolated at the bottom of the vessel. This event drew our attention to the relevance of using characterization techniques to verify the effective encapsulation of core material. The physical properties of microcapsules obtained by four synthesis methods were examined and compared through optical microscopy and scanning electronic microscopy (SEM). Different combinations of dodecylbencensulfonate (SDBS) solution and polyvinyl alcohol (PVA) solution were chosen for the two first syntheses. A third synthesis was conducted with the couple of emulsifiers formed by purified gum arabic (GA) and sodium dodecylsulfate (SDS). The fourth batch, with the emulsifying system based on solutions of both commercial GA in grain and SDS, was the only one that allowed to obtain robust MCs. Fortunately, these MCs could undergo the conditioning operations leading to a powder of linseed oil-filled MCs with an estimated average diameter of 30.5 mu m. Further characterization was carried out on synthesis products of the successful batch. Confocal Raman Microscopy was used for chemical characterization of synthesis products. Thermo Gravimetric Analysis (TGA) and Scanning Differential Calorimetry (DSC) studies were performed to evaluate thermal behavior. In addition, the use of characterization techniques helped to prove the effective encapsulation of linseed oil and the existence of a small fraction of MCs at the bottom layer obtained by the centrifugation of the reaction medium.
机译:在本研究中,通过双级原位聚合方法通过两级合成含有亚麻籽油的PMF的微胶囊(MCS)。作为壳材料被合成,在容器底部分离出可误解微胶囊的微米球形PMF颗粒。此事件提请我们注意使用表征技术来验证核心材料有效封装的相关性。检查通过四种合成方法获得的微胶囊的物理性质,并通过光学显微镜和扫描电子显微镜(SEM)进行比较。选择不同组合的十二烷基苯磺酸盐(SDBS)溶液和聚乙烯醇(PVA)溶液的两个第一合成。用纯化的胶阿拉伯(Ga)和十二烷基硫酸钠(SDS)形成的若干乳化剂进行第三合成。第四批,基于谷物和SDS的商业GA解决方案的乳化系统是唯一一个允许获得强大MCS的批量。幸运的是,这些MCS可以经历调节操作,导致亚麻籽油填充MCS的粉末,估计平均直径为30.5μm。进一步表征在成功批次的合成产物上进行。共焦拉曼显微镜用于合成产品的化学表征。进行热重量分析(TGA)和扫描差分量热法(DSC)研究以评估热行为。此外,表征技术的使用有助于证明通过对反应介质离心获得的底层的底层中的有效封装。

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