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Magnetic Properties of Fe-Pt nanoparticles protected by PVP polymer

机译:PVP聚合物保护的Fe-Pt纳米粒子的磁性

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Annealing effect on the magnetic properties of Fe-Pt nanoparticle was investigated. Fe-Pt nanoparticles were synthesized by the chemical reduction of H_2PtCl_6 and the decomposition of Fe(CO)_5 in the presence of PVP polymers. The samples were annealed at several temperatures from 350°C to 600°C and the structural and magnetic properties were studied by TEM, XRD and magnetization measurements. FePt nanoparticles as-synthesized showed super-paramagnetism and annealed samples at temperatures more than 400°C, ferromagnetism. The crystal structure of as-synthesized sample was disordered fcc, but chemically ordered fct, when it was annealed at more than 400 °C. The annealing effects are the concatenation or agglomeration of nanoparticles accompanied with the increase in particle diameter and with the ordering of the FePt superlattice. The critical diameter for emergence of ferromagnetism of FePt particle has been considered to be 3.6 to 5.6 nm in mean diameter, under the existence of the ordered L1_0 phase The blocking temperature as a function of the annealing temperature was investigated.
机译:研究了退火对Fe-Pt纳米粒子磁性能的影响。通过在PVP聚合物存在下化学还原H_2PtCl_6和分解Fe(CO)_5合成Fe-Pt纳米粒子。将样品在350°C至600°C的几个温度下进行退火,并通过TEM,XRD和磁化测量研究其结构和磁性。合成后的FePt纳米粒子在超过400°C的温度下表现出超顺磁性,并退火了样品(铁磁性)。当在高于400°C的温度下退火时,合成后的样品的晶体结构无序fcc,但化学有序fct。退火效应是纳米粒子的级联或团聚,伴随着粒径的增加和FePt超晶格的有序化。在有序的L1_0相存在下,FePt颗粒出现铁磁性的临界直径被认为是平均直径3.6至5.6 nm。研究了封闭温度与退火温度的关系。

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