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Magnetization of Magnetite Ferrofluid Studied by Using a Magnetic Balance

机译:磁天平研究磁铁矿铁磁流体的磁化

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摘要

Magnetic properties of magnetite ferrofluid are studied by measuring magnetic weights under different magnetic fields with a conventional electronic balance. Magnetite nanoparticles of 11 nm diameter are synthesized to make the ferrofluid. Magnetization calculated from the magnetic weight reveals the hysteresis and deviates from the Langevin function at high magnetic fields. Magnetic weight shifts instantaneously with magnetic field change by Neel and Brown mechanism. When high magnetic field is applied to the sample, slower change of magnetic weight is accompanied with the instantaneous shift via agglomeration of nanoparticles. The slow change of the magnetic weight shows the stretched exponential kinetics. The temporal change of the magnetic weight and the magnetization of the ferrofluid at high magnetic fields suggest that the superparamagnetic sample turns into superspin glass by strong magnetic interparticle interactions.
机译:通过使用常规电子天平在不同磁场下测量磁重来研究磁铁矿铁磁流体的磁性能。合成直径为11 nm的磁铁矿纳米颗粒,以制备铁磁流体。由磁重计算出的磁化强度显示出磁滞现象,并且在强磁场下偏离了朗格文函数。借助Neel和Brown机制,磁场的重量随磁场的变化而瞬时变化。当对样品施加高磁场时,磁重的变化较慢,并伴随着纳米颗粒的团聚而发生瞬时位移。磁重的缓慢变化显示出伸展的指数动力学。在高磁场下,磁性重量的时间变化和铁磁流体的磁化强度表明,超顺磁性样品通过强磁性粒子间相互作用变成超自旋玻璃。

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