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The preparation of MnZn-ferrite nanoparticles in water-CTAB-hexanol microemulsions

机译:水-CTAB-己醇微乳液中锰锌铁氧体纳米粒子的制备

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Magnetic MnZn-ferrite nanoparticles with a narrow size distribution were prepared in water-CTAB-hexanol microemulsions. The region of microemulsion stability in the system was determined, using the titration method, as a function of the temperature and of the type and concentration of solutes in the aqueous phase. The nanoparticles were prepared in a two-step process: the precipitation of the corresponding hydroxides, followed by oxidation of the Fe~(2+). The particle size was controlled by the composition of the microemulsion and the concentration of the reactants (the corresponding sulfates and a precipitation agent, tetramethyl ammonium hydroxide) in the aqueous solution of the microemulsion. The specific magnetization of the nanoparticles (measured at 13 kOe) was found to depend mainly on particle size: ranging from 1.3 emu g~(-1) for particles of approximately 2 nm in size to 7.3 emu g~(-1) for particles of approximately 5 nm in size.
机译:在水-CTAB-己醇微乳液中制备了尺寸分布较窄的磁性MnZn-铁氧体纳米粒子。使用滴定法确定系统中微乳液稳定性的区域,该区域取决于温度以及水相中溶质的类型和浓度的函数。纳米颗粒的制备过程分为两步:沉淀相应的氢氧化物,然后氧化Fe〜(2+)。通过微乳液的组成和微乳液水溶液中反应物(相应的硫酸盐和沉淀剂,四甲基氢氧化铵)的浓度来控制粒度。发现纳米颗粒的比磁化强度(在13 kOe下测量)主要取决于粒径:范围从大约2 nm的颗粒为1.3 emu g〜(-1)到颗粒的7.3 emu g〜(-1)尺寸约为5纳米。

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