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Preparation of Mannitol@Silica core-shell capsules via an interfacial polymerization process from water-in-oil emulsion

机译:通过油包水乳液的界面聚合工艺制备甘露醇@二氧化硅核壳胶囊

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Mannitol@Silica core-shell capsules were prepared from W/O emulsion by adding silicon precursor into the oil-continuous phase to form silica shell through interfacial polymerization reaction. The bicomponent mixture of tetraethoxysilane (TEOS) and 3-aminopropyl triethoxysilane (APTS) was used as silicon precursor to form relatively thick silica shell. The reaction was triggered by the penetration of APTS from oil-continuous phase into the aqueous phase and the silica shell formed as both TEOS and APTS hydrolyzed and polymerized after diffusing through the W/O interface. The growth of the shell layer was believed to be an outside-in mode. The mannitol crystal was well sealed inside the silica capsule under an optimized condition and the leakage was successfully avoided. The Mannitol@Silica core-shell capsules own irreversible phase change character in the range of 142.1-166.2 °C with latent heat of 147.4 J/g.
机译:由W / O乳液制备Mannitol @ Silica核壳胶囊,方法是将硅前体加入到油连续相中,通过界面聚合反应形成二氧化硅壳。四乙氧基硅烷(TEOS)和3-氨基丙基三乙氧基硅烷(APTS)的双组分混合物用作硅前体,以形成相对较厚的二氧化硅壳。 APTS从油连续相渗透到水相中引发了反应,并且在通过W / O界面扩散后,TEOS和APTS都发生了水解和聚合反应,形成了二氧化硅壳。壳层的生长被认为是一种由外而内的模式。在最佳条件下,甘露醇晶体被良好地密封在二氧化硅胶囊内部,并成功避免了泄漏。 Mannitol @ Silica核壳胶囊在142.1-166.2°C范围内具有不可逆的相变特性,潜热为147.4 J / g。

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