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Synthesis and Magnetic Behavior of Nickel Zinc Ferrite Nanoparticles Coated Onto Carbon Microcoils

机译:碳微线圈上包覆的镍锌铁氧体纳米粒子的合成及磁行为

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Magnetic nanoparticles consisted of nickel zinc ferrite (NZF) were chemically synthesized by co-precipitation and simultaneously coated onto carbon microcoils (CMC), and their structure and magnetic properties were investigated. The samples were prepared at various mass ratios of CMC : NZF ranging from 1 : 5 to 5 : 1. According to X-ray diffraction (XRD) measurements, all the samples synthesized in this study exhibit peaks associated with the spinel ferrite structure of NZF nanoparticles along with a fairly broad peak due to the amorphous structure of CMC. The sample synthesized at CMC: ${hbox {NZF}}=$ 1 : 1 gives the highest crystallinity and the largest magnetization at 300 K for NZF according to XRD and magnetization measurement using a superconducting quantum interference device magnetometer. Microstructural analysis of the CMC-NZF assemblies using scanning electron microscopy shows that the use of oleic acid and oleylamine improves the coverage of NZF on CMC and that the assembly made at CMC: ${hbox {NZF}}=$ 2 : 1 yields the highest coverage of NZF nanoparticles onto the CMC surface.
机译:通过共沉淀化学合成了由镍铁氧体(NZF)组成的磁性纳米粒子,同时将其包覆在碳微线圈(CMC)上,研究了它们的结构和磁性。样品以CMC various:NZF的不同质量比从1:5到5:1制备,根据X射线衍射(XRD)测量,本研究合成的所有样品均出现与NZF尖晶石铁素体结构相关的峰由于CMC的无定形结构,纳米颗粒具有相当宽的峰。在CMC处合成的样品: $ {hbox {NZF}} = $ 1:1给出最高的结晶度和最大的磁化强度根据XRD和NZF在300 K下使用超导量子干涉仪磁力计进行磁化测量。使用扫描电子显微镜对CMC-NZF组件进行的显微结构分析表明,使用油酸和油胺可提高NZF在CMC上的覆盖率,并且在CMC上进行组装: $ {hbox {NZF}} = $ 2:1产生的NZF纳米颗粒在CMC表面的覆盖率最高。

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