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首页> 外文期刊>Journal of nanoscience and nanotechnology >Synthesis, Characterization and Potential Application of MnZn Ferrite and MnZn Ferrite@Au Nanoparticles
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Synthesis, Characterization and Potential Application of MnZn Ferrite and MnZn Ferrite@Au Nanoparticles

机译:MnZn铁氧体和MnZn铁氧体@Au纳米粒子的合成,表征及潜在应用

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The ability to tune the magnetic properties of magnetic nanoparticles by manipulating the composition or surface properties of the nanoparticles is important for exploiting the application of the nanomaterials. This report describes preliminary findings of an investigation of the viability of synthesizing MnZn ferrite and core@shell MnZn ferrite@Au nanoparticles as potentially magnetization-tunable nanomaterials. The synthesis of the core-shell magnetic nanoparticles involved a simple combination of seed formation of the MnZn ferrite magnetic nanoparticles and surface coating of the seeds with gold shells. Water-soluble MnZn ferrite nanoparticles of 20-40 nm diameters and MnZn ferrite@Au nanoparticles of 30-60 nm have been obtained. The MnZn ferrite@Au nanoparticles have been demonstrated to be viable in magnetic separation of nanoparticles via interparticle antibody-specific binding reactivity between antibodies on the gold shells of the core-shell magnetic particles and proteins on gold nanoparticles. These findings have significant implications to the design of the core (c)shell magnetic nanomaterials with core composition tuned magnetization for bioassay application.
机译:通过操纵纳米粒子的组成或表面性质来调节磁性纳米粒子的磁性的能力对于开发纳米​​材料的应用很重要。这份报告描述了初步研究结果,这些研究是合成MnZn铁氧体和核壳型MnZn铁氧体@Au纳米粒子作为潜在可磁化可调纳米材料的可行性。核-壳磁性纳米粒子的合成涉及MnZn铁氧体磁性纳米粒子的种子形成和种子具有金壳的表面涂层的简单组合。已经获得了直径为20-40nm的水溶性MnZn铁氧体纳米颗粒和30-60nm的MnZn铁氧体@Au纳米颗粒。 MnZn铁氧体@Au纳米颗粒通过核-壳磁性颗粒的金壳上的抗体与金纳米颗粒上的蛋白之间的颗粒间抗体特异性结合反应性,已证明在纳米颗粒的磁性分离中是可行的。这些发现对具有用于生物测定应用的核组成调谐磁化的核(c)壳磁性纳米材料的设计具有重要意义。

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