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Hydrothermal synthesis and competitive growth of flake-like M-type strontium hexaferrite

机译:片状M型六方锶锶铁氧体的水热合成及竞争生长

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In this paper, single flake-like strontium hexaferrite was directly synthesized via a modified hydrothermal approach without high-temperature annealing. To determine the main factors governing the formation of the hexaferrite phase and impurity α-Fe _(2) O _(3) , effects of alkali environment and concentrations of metal ions on phase composition, grain growth, and magnetic properties were systematically analyzed. Results from XRD, FESEM and FT-IR analyses indicated that initial alkali concentration was the key factor influencing the phase composition of particles. Suitable initial alkali environment can enhance the nucleation and growth of ferrite, and inhibit the formation of by-product α-Fe _(2) O _(3) at the same time. It was also found that the increase in initial concentration of strontium ions could improve the nucleation of hexaferrite and reduce the grain size, and consequently, change the magnetic performance of hexagonal particles. When the molar ratios of ferric ions to strontium ions were constant, the average grain size did not change significantly with the initial concentration of iron ions, which could be attributed to high levels of strontium ions and hydroxyl ions in the reaction system. The above-mentioned results indicate that the optimized hydrothermal conditions are beneficial for the formation of a single phase and for controlling the particle size and magnetic properties of M-type hexaferrite.
机译:本文采用改进的水热法直接合成了片状六方锶锶铁氧体,无需高温退火。为了确定控制六方铁氧体相和杂质α-Fe_(2)O _(3)形成的主要因素,系统分析了碱环境和金属离子浓度对相组成,晶粒生长和磁性能的影响。 XRD,FESEM和FT-IR分析的结果表明,初始碱浓度是影响颗粒相组成的关键因素。合适的初始碱环境可以增强铁素体的形核和生长,并同时抑制副产物α-Fe_(2)O _(3)的形成。还发现锶离子的初始浓度的增加可以改善六价铁氧体的成核作用并减小晶粒尺寸,从而改变六方颗粒的磁性能。当铁离子与锶离子的摩尔比恒定时,平均粒径不会随铁离子的初始浓度而显着变化,这可能归因于反应体系中锶离子和羟基离子的含量较高。上述结果表明,优化的水热条件有利于形成单相并控制M型六方铁氧体的粒径和磁性能。

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