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首页> 外文期刊>IEEE Transactions on Magnetics >Facile Synthesis, Phase Transfer, and Magnetic Properties of Monodisperse Magnetite Nanocubes
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Facile Synthesis, Phase Transfer, and Magnetic Properties of Monodisperse Magnetite Nanocubes

机译:单分散磁铁矿纳米晶的简便合成,相转移和磁性

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摘要

The monodisperse Fe$_{3}$ O$_{4}$ nanocubes with controllable sizes from 6.5 to 30.0 nm have been synthesized in organic phase. By the formation of surfactant bilayers with charged hydrophilic ions of $alpha$ -cyclodextrin, Fe$_{3}$ O$_{4}$ nanocubes were successfully “pulled” into water from hexane for a possible biomedical application. The Fe $_{3}$O $_{4}$ nanocubes with the surfactant bilayers show a good stability in aqueous solution compared with those in aqueous solution which were transferred from organic phase by ligand exchange using PVP with strong binding group. The hysteresis loop at 300 K of Fe $_{3}$O $_{4}$ nanocubes with different sizes reveals that a size-dependent behavior of saturation magnetization and the nanocubes with a size less than 25 nm show a typical superparamagnetic behavior at room temperature. The comparison of magnetization of the hydrophilic Fe$_{3}$O $_{4}$ nanocubes in CD and PVP aqueous solution reveals that the surfactant bilayers can provide a good stability of magnetization.
机译:已经在有机相中合成了尺寸可控制在6.5至30.0 nm之间的单分散Fe $ _ {3} $ O $ _ {4} $纳米立方体。通过形成带电荷的α-环糊精亲水离子的表面活性剂双层,Fe __ {3} $ O $ _ {4} $纳米立方体被成功地从己烷中“拉”入水中,以用于可能的生物医学应用。与具有表面活性剂双层的Fe $ _ {3} $ O $ _ {4} $纳米立方体在水溶液中相比,在水溶液中具有良好的稳定性,而水溶液是通过使用具有强结合基团的PVP通过配体交换从有机相转移而来的。具有不同尺寸的Fe $ _ {3} $ O $ _ {4} $纳米立方体在300 K时的磁滞回线揭示了饱和磁化强度的尺寸依赖性行为以及尺寸小于25 nm的纳米立方体表现出典型的超顺磁行为在室温下。 CD和PVP水溶液中亲水Fe $ _ {3} $ O $ _ {4} $纳米立方体的磁化强度比较表明,表面活性剂双层可以提供良好的磁化稳定性。

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