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Mechanochemical Synthesis of Iron and Cobalt Magnetic Metal Nanoparticles and Iron/Calcium Oxide and Cobalt/Calcium Oxide Nanocomposites

机译:铁钴金属磁性纳米粒子及铁/氧化钙和钴/氧化钙纳米复合材料的机械化学合成

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摘要

We report an environmentally benign and cost‐effective method to produce Fe and Co magnetic metal nanoparticles as well as the Fe/Cao and Co/CaO nanocomposites by using a novel, dry mechanochemical process. Mechanochemical milling of metal oxides with a suitable reducing agent resulted in the production of magnetic metal nanoparticles. The process involved grinding and consequent reduction of low‐costing oxide powders, unlike conventional processing techniques involving metal salts or metal complexes. Calcium granules were used as the reducing agent. Magnetometry measurements were performed over a large range of temperatures, from 10 to 1273 K, to evaluate the Curie temperature, blocking temperature, irreversibility temperature, saturation magnetization, and coercivity. The saturation magnetizations of the iron and cobalt nanoparticles were found to be 191 and 102 emu g−1, respectively. The heating abilities of these nanoparticles suspended in several liquids under alternating magnetic fields were measured and the specific loss power was determined. Our results suggest that the dry mechanochemical process is a robust method to produce metallic nanoparticles and nanocomposites.
机译:我们报告了一种环境友好且具有成本效益的方法,该方法通过使用新颖的干式机械化学工艺来生产Fe和Co磁性金属纳米颗粒以及Fe / Cao和Co / CaO纳米复合材料。用合适的还原剂对金属氧化物进行机械化学研磨导致产生磁性金属纳米颗粒。与传统的涉及金属盐或金属配合物的加工技术不同,该过程涉及研磨和随后还原低成本氧化物粉末。钙颗粒用作还原剂。在10至1273 K的较大温度范围内进行了磁力测定,以评估居里温度,阻塞温度,不可逆温度,饱和磁化强度和矫顽力。铁和钴纳米粒子的饱和磁化强度分别为191和102 emu g -1 。测量了在交变磁场下悬浮在几种液体中的这些纳米粒子的加热能力,并确定了比损耗功率。我们的结果表明,干式机械化学过程是生产金属纳米颗粒和纳米复合材料的可靠方法。

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