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Synthesis Of Fe3O4 Nanoparticles Of Iron Sand Coprecipitation Method With Polyethylene Glycol 6000

机译:聚乙二醇6000铁砂共沉淀法合成Fe3O4纳米粒子

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This study aimed to obtain a particle size-based nano Fe 3 O 4 iron sand, determine the effect of Polyethylene Glycol (PEG) -6000 to be produced from iron sand in synthetic by using coprecipitation method and the nature of magnetization. Synthetic done by mixing natural sand with HCl as solvent and NH 4 OH as a precipitant, as templates are added PEG-6000 .. Then, characterized by using X-Ray Diffractometer (XRD). Vibrating Sample Magnetometer (VSM) and Fourier Transform Infra Red (FTIR). From the test results (XRD) shows the crystal size Preparation Fe3O4 nanoparticles with PEG 6000 (1: 3), (1: 4), (1: 5) in a sequence that is 14.90 nm, 22:16 nm, 33.11 nm while without PEG 6000 29.08 nm , Vibrating Sample Magnetometer measurement results (VSM) shows that the value of Ms saturation field for without PEG-6000 Fe3O4, Fe 3 O 4 with PEG-6000 (1: 3), (1: 4), (1: 5) respectively 27.9 emu / g, 47.4 emu / g, 35.3 emu / g, 51.7 emu / g and field coercivity (Hc), each for 0,013 Tesla, 0.022 Tesla, Tesla 0.14, 0.009 Tesla. FTIR results showed that there was a shift peaks indicating increased number of PEG. From each sample came the peak of Fe-O owned by Fe 3 O 4 where the wavelength of Fe-O at sample PEG has a lower value than the wavelength Fe 3 O 4 caused the PEG Key words : Nanoparticles Fe 3 O 4 , PEG 600, particle size, magnetic properties
机译:本研究旨在获得一种基于粒度的纳米Fe 3 O 4铁砂,通过共沉淀法和磁化性质确定合成铁砂生产聚乙二醇(PEG)-6000的效果。通过将天然沙子与HCl作为溶剂和NH 4 OH作为沉淀剂混合来完成合成,并添加PEG-6000。作为模板。然后使用X射线衍射仪(XRD)进行表征。振动样品磁强计(VSM)和傅立叶变换红外(FTIR)。从测试结果(XRD)显示了具有PEG 6000(1:3),(1:4),(1:5)的Fe3O4纳米颗粒的制备顺序为14.90 nm,22:16 nm,33.11 nm不使用PEG 6000 29.08 nm的振动样品磁强计测量结果(VSM)显示,不使用PEG-6000 Fe3O4,使用PEG-6000的Fe 3 O 4时(1:3),(1:4),( 1:5)分别为27.9 emu / g,47.4 emu / g,35.3 emu / g,51.7 emu / g和场矫顽力(Hc),分别为0,013 Tesla,0.022 Tesla,0.14、0.009 Tesla。 FTIR结果显示存在一个位移峰,表明PEG数量增加。每个样品中都出现了Fe 3 O 4所具有的Fe-O峰,样品PEG处的Fe-O波长小于引起PEG的Fe 3 O 4波长。关键词:纳米颗粒Fe 3 O 4,PEG 600,粒径,磁性

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