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首页> 外文期刊>Chemistry central journal >Influence of calcination temperature on structural and magnetic properties of nanocomposites formed by Co-ferrite dispersed in sol-gel silica matrix using tetrakis(2-hydroxyethyl) orthosilicate as precursor
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Influence of calcination temperature on structural and magnetic properties of nanocomposites formed by Co-ferrite dispersed in sol-gel silica matrix using tetrakis(2-hydroxyethyl) orthosilicate as precursor

机译:煅烧温度对以四(2-羟乙基)原硅酸盐为前体的钴铁氧体分散在溶胶-凝胶二氧化硅基质中形成的纳米复合材料的结构和磁性的影响

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Effects of calcination temperatures varying from 400 to 1000掳C on structural and magnetic properties of nanocomposites formed by Co-ferrite dispersed in the sol-gel silica matrix using tetrakis(2-hydroxyethyl) orthosilicate (THEOS) as water-soluble silica precursor have been investigated. Studies carried out using XRD, FT-IR, TEM, STA (TG-DTG-DTA) and VSM techniques. Results indicated that magnetic properties of samples such as superparamagnetism and ferromagnetism showed great dependence on the variation of the crystallinity and particle size caused by the calcination temperature. The crystallization, saturation magnetization Ms and remenant magnetization Mr increased as the calcination temperature increased. But the variation of coercivity Hc was not in accordance with that of Ms and Mr, indicating that Hc is not determined only by the crystallinity and size of CoFe2O4 nanoparticles. TEM images showed spherical nanoparticles dispersed in the silica network with sizes of 10-30 nm. Results showed that the well-established silica network provided nucleation locations for CoFe2O4 nanoparticles to confinement the coarsening and aggregation of nanoparticles. THEOS as silica matrix network provides an ideal nucleation environment to disperse CoFe2O4 nanoparticles and thus to confine them to aggregate and coarsen. By using THEOS as water-soluble silica precursor over the currently used TEOS and TMOS, the organic solvents are not needed owing to the complete solubility of THEOS in water. Synthesized nanocomposites with adjustable particle sizes and controllable magnetic properties make the applicability of Co-ferrite even more versatile.
机译:煅烧温度在400至1000°C之间变化对使用四(2-羟乙基)原硅酸盐(THEOS)作为水溶性二氧化硅前体的钴铁氧体分散在溶胶-凝胶二氧化硅基质中形成的纳米复合材料的结构和磁性的影响调查。使用XRD,FT-IR,TEM,STA(TG-DTG-DTA)和VSM技术进行的研究。结果表明,样品的磁性能,如超顺磁性和铁磁性,对煅烧温度引起的结晶度和粒径变化有很大的依赖性。随着煅烧温度的升高,结晶度,饱和磁化强度Ms和剩余磁化强度Mr增大。但是矫顽力Hc的变化与Ms和Mr的变化不一致,这表明Hc不仅取决于CoFe2O4纳米颗粒的结晶度和大小。 TEM图像显示球形纳米颗粒分散在二氧化硅网络中,尺寸为10-30 nm。结果表明,完善的二氧化硅网络为CoFe2O4纳米粒子提供了成核位置,以限制纳米粒子的粗化和聚集。作为二氧化硅基质网络的THEOS提供了理想的成核环境,以分散CoFe2O4纳米颗粒,从而将其限制为聚集和粗化。通过使用THEOS作为目前使用的TEOS和TMOS的水溶性二氧化硅前体,由于THEOS在水中的完全溶解性,因此不需要有机溶剂。具有可调粒径和可控磁性的合成纳米复合材料使钴铁氧体的适用范围更加广泛。

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