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Thermal relaxation and collective dynamics of interacting aerosol-generated hexagonal NiFe2O4 nanoparticles

机译:相互作用气溶胶生成的六方形NiFe2O4纳米粒子的热弛豫和集体动力学

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摘要

This article reports on the magnetic properties of interacting uncoated nickel ferrite (NiFe2O4) nanoparticles synthesized through an aerosol levitation-jet technique. A comprehensive set of samples with different compositions of background gas and metal precursors, as well as applied electric field intensities, has been studied. Nanoparticles prepared under a field of 210 kV m~1 show moderately high-field irreversibility and shifted hysteresis loops after field-cooling, also exhibiting a joint temperature decrease of the exchange field and coercivity. The appearance of memory effects has been checked using the genuine ZFC protocol and the observed behavior cannot be fully explained in terms of thermal relaxation. Although dipolar interactions prevail, exchange interactions occur to a certain extent within a narrow range of applied fields. The origin of the slow dynamics in the system is found to be given by the interplay of the distribution of energy barriers due to size dispersion and the cooperative dynamics associated with frustrated interactions.
机译:本文报道了通过气溶胶悬浮喷射技术合成的相互作用的未涂层镍铁氧体(NiFe2O4)纳米粒子的磁性。已经研究了具有不同背景气体和金属前体成分以及施加的电场强度的一整套样品。在210 kV m〜1的磁场下制备的纳米粒子在磁场冷却后显示出中等的高场不可逆性和磁滞回线偏移,并且还表现出交换场的联合温度降低和矫顽力。记忆效应的出现已使用正版ZFC协议进行了检查,并且观察到的行为不能完全根据热松弛来解释。尽管偶极相互作用占优势,但交换相互作用在一定范围的应用领域内会在一定程度上发生。发现系统中缓慢动力学的起因是由于尺寸分散引起的能垒分布的相互作用以及与受挫相互作用相关的协同动力学所引起的。

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