首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Transformation of Nano- to Mesosized Iron Oxide Cores to a-Fe within Organic Shells Preserved Intact
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Transformation of Nano- to Mesosized Iron Oxide Cores to a-Fe within Organic Shells Preserved Intact

机译:在完整保存的有机壳内将纳米至介中氧化铁核心转化为 a-Fe

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摘要

Nanoparticles of a-Fe, an excellent soft magnet, have been successfully made corrosion-resistant and dispersible in polar and non-polar solvents by coating these with inner and outer layers of amorphous silica and organics like poly(ethylene glycol), respectively. The double coating was facilitated by using stable and easy-to-handle oxide particles as the core to be subsequently metallized at temperatures low enough to keep the organic layer intact. Use of CaH2 as a reductant lowered the working temperature down to 200-300 °C, where thermal particle adhesion did not take place, formation of impurities like iron silicates was suppressed, and the overall morphological features of the starting particles were preserved. The feasibility of organo-functionalization of the surface will open a way for this nanpmagnet toward bioscientific and medical applications.
机译:a-Fe 的纳米颗粒是一种优良的软磁铁,通过分别涂覆无定形二氧化硅和聚(乙二醇)等有机物的内层和外层,成功地使其耐腐蚀并可分散在极性和非极性溶剂中。通过使用稳定且易于处理的氧化物颗粒作为核心,随后在足够低的温度下进行金属化以保持有机层完好无损,从而促进了双重涂层。使用CaH2作为还原剂将工作温度降低到200-300°C,不发生热颗粒粘附,抑制硅酸铁等杂质的形成,并保留了起始颗粒的整体形态特征。表面有机功能化的可行性将为这种纳米磁体为生物科学和医学应用开辟一条道路。

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