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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Bifunctional FePt core-shell and hollow spheres: Sonochemical preparation and self-assembly
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Bifunctional FePt core-shell and hollow spheres: Sonochemical preparation and self-assembly

机译:双功能FePt核壳和空心球:声化学制备和自组装

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摘要

The sonochemical preparation of FePt/SiO2 and FePt/ZnS/SiO2 core - shell and hollow microspheres, as well as their self-assembly into a quasi-monolayer, was demonstrated. Uniform FePt nanoparticles can be deposited on silica microspheres modified with polyelectrolytes by a sonochemical process, using iron and platinum acetylacetonates as metal precursors. The amine and carboxylic functional groups in the polyelectrolyte layer provided nucleation sites for FePt nanoparticles. Alternatively, if the silica was precoated with ZnS, the nucleation of FePt nanoparticles on the ZnS shell can occur. A high coercivity of 12 kOe for these microspheres was obtained after annealing. A bifunctional microsphere with both luminescence and magnetic properties could be generated after the FePt/ZnS/SiO2 microsphere was annealed in a vacuum.
机译:演示了FePt / SiO2和FePt / ZnS / SiO2核-壳和中空微球的声化学制备以及它们自组装成准单层的过程。可以使用铁和乙酰丙酮铂和铂作为金属前体,通过声化学方法将均匀的FePt纳米颗粒沉积在用聚电解质改性的二氧化硅微球上。聚电解质层中的胺和羧基官能团为FePt纳米颗粒提供了成核位点。或者,如果二氧化硅用ZnS预涂层,则FePt纳米颗粒在ZnS壳上会成核。退火后,这些微球的矫顽力高达12 kOe。 FePt / ZnS / SiO2微球在真空中退火后,可以生成具有发光和磁性的双功能微球。

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