Preparation and characterization of magnetic γ-Al2O3 ceramic nanocomposite particles with variable Fe3O4 content and modification with epoxide functional polymer

材料科学 纳米复合材料 超顺磁性 化学工程 陶瓷 磁性纳米粒子 傅里叶变换红外光谱 聚合 聚合物 甲基丙烯酸缩水甘油酯 纳米颗粒 X射线光电子能谱 复合材料 磁化 纳米技术 磁场 工程类 物理 量子力学
作者
Sadia Salsabil Bristy,Mohammad Abdur Rahman,Klaus Tauer,Hideto Minami,Hasan Ahmad
出处
期刊:Ceramics International [Elsevier BV]
卷期号:44 (4): 3951-3959 被引量:24
标识
DOI:10.1016/j.ceramint.2017.11.187
摘要

Porous γ-alumina (γ-Al2O3) is one of widely used ceramic materials. To maximize the application potentials attempt was made to prepare multifunctional γ-Al2O3 ceramic composite particles following magnetization and then seeded polymerization with epoxide functional glycidyl methacrylate (GMA). γ-Al2O3 particles were first prepared by a modified sol-gel approach and then doped with variable content Fe3O4 nanoparticles. At higher Fe3O4 content the magnetite nanoparticles were oriented into needle like hairy structure basically grown from the surface of γ-Al2O3 particles. Before the seeded polymerization the magnetic γ-Al2O3 particles were modified with SiO2 layer to improve the compatibility with the PGMA layer. The produced multifunctional ceramic particles were named as γ-Al2O3/Fe3O4/SiO2/PGMA nanocomposite because one of the phases constituting Fe3O4 was in nano-size range. The produced nanocomposite particles possessed superparamagnetic properties and could be isolated from the dispersion medium by external magnetic field. Fourier Transform IR (FTIR) and X-ray photoelectron spectroscopic (XPS) data revealed that final nanocomposite particles contained reactive epoxide groups on or near the surface. The produced multifunctional γ-Al2O3 ceramic nanocomposite particles can be useful in biotechnology, catalysis and adsorbents for pollutant removal.

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