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Magnetic Silver-Coated Ferrite Nanoparticles and Their Application in Thick Films

机译:磁性镀银铁氧体纳米粒子及其在厚膜中的应用

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Magnetic silver-coated ferrite nanoparticles with 39.8percent weight gain (relative to ferrite nanopowder coated by a silver layer) were synthesized by electroless deposition of silver on ferrite nanopowder. The mechanism of the electroless deposition was explored in terms of pretreatment, sensitization, activation, and the reduction of silver-ammonia complexes. Experiments showed that the optimal deposition conditions were a temperature of 50 deg C, pH value of 10 to 12, duration of 65 min with ethanol plus polyethylene glycol as additives, and ultrasonic vibration as a method of dispersing the nanoparticles. From transmission electron microscopy (TEM) images, it was observed that as-synthesized nanoparticles had a core-shell structure with a particle size of 35 nm to 90 nm and a shell thickness of 5 nm to 20 nm. X-ray diffraction (XRD) analysis confirmed that only ferrite and metallic silver were present in the product. Electrical resistance and magnetic hysteresis measurements demonstrated that the nanoparticles were both electrically conductive (volume electrical resistivity on the order of 10~(-4) OMEGA cm to 10~(-3) OMEGA cm when compressed to pressure of 2 X 10~(6) Pa) and possessed ferrimagnetic properties. After a thick-film paste, obtained with the nanoparticles as the functional phase, was directly written and sintered, scanning electron microscopy (SEM) analysis and electrical resistance measurements of conductive lines in the acquired array pattern showed that an electrically conductive network with some defects and cavities was formed, with a volume electrical resistivity of 1 X 10~(-4) OMEGA cm to 1 X 10~(-3) OMEGA cm.
机译:通过在铁氧体纳米粉上化学沉积银来合成具有39.8%重量增加的磁性镀银铁氧体纳米颗粒(相对于由银层涂覆的铁氧体纳米粉)。从预处理,敏化,活化和银-氨络合物的还原方面探讨了化学沉积的机理。实验表明,最佳的沉积条件为温度为50℃,pH值为10至12,乙醇加聚乙二醇为添加剂的时间为65分钟,超声振动作为分散纳米颗粒的方法。从透射电子显微镜(TEM)图像中,观察到合成后的纳米颗粒具有核-壳结构,其粒径为35nm至90nm,壳厚度为5nm至20nm。 X射线衍射(XRD)分析证实产物中仅存在铁素体和金属银。电阻和磁滞测量结果表明,纳米颗粒均具有导电性(压缩至2 X 10〜(6时,体积电阻率约为10〜(-4)OMEGA cm至10〜(-3)OMEGA cm)。 )Pa)并具有亚铁磁性。将以纳米粒子为功能相的厚膜糊剂直接写入并烧结后,扫描电子显微镜(SEM)分析和所得阵列图案中导电线的电阻测量表明存在一些缺陷的导电网络并形成空腔,其体积电阻率为1 X 10〜(-4)OMEGA cm至1 X 10〜(-3)OMEGA cm。

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