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Complex inorganic/organic core-shell architectures via an inverse emulsion process

机译:通过逆乳液法制备复杂的无机/有机核-壳结构

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摘要

The preparation of complex inorganic/organic core-shell particles and their in situ hydrophobization via an inverse emulsion technique is described here. Typically, aqueous solutions of precursor salts are dispersed with the help of statistical copolymers in an organic phase and subsequently polymer-stabilized nanoparticles precipitate at room temperature (e.g., barium- or strontium-based perov-skite nanoparticles). By this technique, core-multiple-shell ZnO-silica-polymer nanoparticles may also be obtained, whereby the polymer matrix is protected against the photocatalytically active ZnO by the silica shell. The particles are characterized by X-ray, transmission electron microscopy, and dynamic light scattering. In this approach, amphiphilic statistical copolymers act not only as stabilizers for inverse emulsions, but they also hydrophobize the remaining complex inorganic particles shelled on the surface after the precipitation. The preparation of hybrid nanoparticles is performed by a one-pot procedure, which makes this process attractive for industrial applications.
机译:本文描述了复杂的无机/有机核-壳颗粒的制备及其通过逆乳液技术进行的原位疏水化。通常,前体盐的水溶液借助于统计共聚物分散在有机相中,随后聚合物稳定的纳米颗粒在室温下沉淀(例如,钡或锶基的钙钛矿-钙钛矿纳米颗粒)。通过这种技术,还可以获得核-多壳ZnO-二氧化硅-聚合物纳米颗粒,由此聚合物​​基质被二氧化硅壳保护而免受光催化活性ZnO的影响。粒子的特征在于X射线,透射电子显微镜和动态光散射。在这种方法中,两亲性统计共聚物不仅充当反相乳液的稳定剂,而且还使沉淀后脱壳的残留复杂无机颗粒疏水化。杂化纳米颗粒的制备通过一锅法进行,这使该方法对工业应用具有吸引力。

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