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Ultrasmall Nanocapsules Obtained by Controlling Ostwald Ripening

机译:通过控制Ostwald成熟而获得的超大纳米胶囊

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摘要

We describe here a method to synthesize ultrasmall nanocapsules with a diameter of 6 nm, exhibiting a well-defined core-shell morphology. Remarkably, the nanocapules are synthesized in a miniemulsion process without the need of large amounts of surfactant as commonly used in the microemulsion process. Ultrasmall nanocapsules with an oil core and a silica shell are formed by the concurrent processes of a sol-gel reaction and Ostwald ripening. Using solvents with different water solubilities and alkoxysilanes with different reactivities, we demonstrate that sizes of obtained nanocapsules depend on the ripening rate and alkoxysilane conversion rate. The method can be also used for encapsulating natural oils such as peppermint oil and limonene. This work shows that the Ostwald ripening phenomenon can be employed beneficially for the preparation of very small colloids.
机译:我们在这里描述了一种合成直径为6nm的超小型纳米胶囊的方法,展示了明确的核壳形态。值得注意的是,纳米毛细管是在细乳液过程中合成的,不需要微乳液过程中常用的大量表面活性剂。通过溶胶-凝胶反应和奥斯特瓦尔德熟化的同时过程,形成了具有油核和硅壳的超小型纳米胶囊。使用具有不同水溶性的溶剂和具有不同反应性的烷氧基硅烷,我们证明所获得的纳米胶囊的大小取决于成熟率和烷氧基硅烷转化率。该方法也可用于封装天然油,如薄荷油和柠檬烯。这项工作表明,奥斯特瓦尔德成熟现象可用于制备非常小的胶体。

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