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Synthesis and magnetic properties of BaFe12O19 hexaferrite nanoparticles by a reverse microemulsion technique

机译:反向微乳液技术合成BaFe12O19六价铁氧体纳米粒子及其磁性能

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BaFe12O19 hexaferrite nanoparticles, containing cetyltrimethylammonium chloride (CTAC), n-hexanol, and cyclohexane, were synthesized by a reverse microemulsion technique with a combination of (NH4)(2)CO3 and NH3 center dot H2O as precipitator. Barium ferrite nanoparticles with 30 nm diameter and uniform flaky structure were proved to be single magnetic domains, which have magnetic properties comparable to some of the best ever reported for fine barium ferrite powders by chemical methods. Heat-treatment conditions can significantly influence the formation of pure BaFe12O19 hexaferrite phase, where quenching and nonprecalcination would produce intermediates of alpha-Fe2O3 and BaFe2O4, as detected by X-ray diffraction (XRD) and Fourier transform infrared (FT-IR) analyses, resulting in lower magnetic properties. High magnetocrystalline anisotropy constant K and energy barrier E-A calculated from Stoner-Wohlfarth theory may also account for the high coercivity for pure BaFe12O19. The variation of electrical conductivity during the formation and reaction of microemulsion droplets suggests nonpercolating microemulsion conducting systems. Transmission electron microscopic (TEM) images of the microemulsion droplets from a microemulsion system with R = V(water):V(oil) = 1:8 displayed microemulsion droplets about 100 nm, containing a barium ferrite precursor "core" of about 30 nm in size, with collision and coalescence being discovered.
机译:通过反向微乳液技术,以(NH4)(2)CO3和NH3中心点H2O为沉淀剂,合成了含有十六烷基三甲基氯化铵(CTAC),正己醇和环己烷的BaFe12O19六价铁纳米颗粒。直径为30 nm的均匀片状结构的钡铁氧体纳米粒子被证明是单个磁畴,其磁性能与化学方法报道的细钡铁氧体粉末有史以来最好的磁性能相当。通过X射线衍射(XRD)和傅里叶变换红外(FT-IR)分析检测到,热处理条件可能会严重影响纯BaFe12O19六方铁氧体相的形成,淬火和未预煅烧将产生α-Fe2O3和BaFe2O4的中间体,导致较低的磁性能。根据Stoner-Wohlfarth理论计算得出的高磁晶各向异性常数K和能垒E-A也可以解释纯BaFe12O19的高矫顽力。在微乳液液滴的形成和反应过程中电导率的变化表明存在非渗滤性微乳液导电体系。 R = V(水):V(油)= 1:8的微乳液系统中的微乳液液滴的透射电子显微镜(TEM)图像显示约100 nm的微乳液液滴,其中包含约30 nm的钡铁氧体前驱体“核”在大小上,发现了碰撞和合并。

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