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首页> 外文期刊>Journal of Nanoparticle Research >Synthesis, structure stability and magnetic properties of nanocrystalline Ag–Ni alloy
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Synthesis, structure stability and magnetic properties of nanocrystalline Ag–Ni alloy

机译:纳米晶Ag-Ni合金的合成,结构稳定性和磁性能

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摘要

Silver–nickel alloy nanoparticles with an average size of 30–40 nm were synthesized by chemically reducing the mixture of silver and nickel salts using sodium borohydride. The structure and the magnetic properties of the alloy samples with different compositions were investigated. The phase stability of the material was analysed after annealing the sample in vacuum at various temperatures. The material exhibits single fcc phase which is stable up to 400 °C and Ni precipitation sets in when the sample is annealed to 500 °C. The thermal analysis using DSC was carried out to confirm the same. The alloy compositions are found to be in close correlation with the metal salt ratios in the precursors. The synthesized samples exhibit weak paramagnetic to ferromagnetic behaviour. The magnetic measurements reveal that by adjusting the precursor ratio, the Ni content in the material can be altered and hence its magnetic properties tailored to suit specific requirements. The formation of Ag–Ni alloy is confirmed by the observed Curie temperature from the magneto thermogram. Annealing the sample helps to produce significant enhancement in the magnetization of the material.
机译:通过使用硼氢化钠化学还原银盐和镍盐的混合物,合成了平均大小为30-40 nm的银镍合金纳米颗粒。研究了不同组成的合金样品的结构和磁性能。在不同温度下真空退火样品后,分析材料的相稳定性。该材料表现出单一的fcc相,在高达400°C的温度下稳定,当样品退火至500°C时,会发生Ni沉淀。使用DSC进行热分析以确认相同。发现合金组成与前体中的金属盐比率紧密相关。合成的样品表现出弱的顺磁性到铁磁性的行为。磁性测量表明,通过调节前驱体比率,可以改变材料中的Ni含量,因此可以调整其磁性以适应特定要求。从磁热谱图中观察到的居里温度证实了Ag-Ni合金的形成。样品退火有助于显着增强材料的磁化强度。

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