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Formation of magnetic Ni nanoparticles in x-ray irradiated electroless solution

机译:X射线化学镀溶液中磁性Ni纳米颗粒的形成

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Magnetic nanostructures are attracting tremendous interest as regards application in high-density data storage devices and magnetic fluids. We have prepared magnetic nanoparticles (approx 7.5 nm) by x-ray irradiation of electroless solutions and furthermore have investigated their structural and magnetic properties. Interestingly, we find that the formation of these Ni nanoparticles occurs spontaneously, during the room temperature process, dominantly at electrolyte pH of 8.2. The hydrated electrons produced during the irradiation of electroless solution seem to play a decisive role in the spontaneous formation and growth of nanoparticles. The possible surface alloying and/or coating over these pure Ni cores occurs only upon longer irradiation of high-P-content solutions. This suggests a possible catalytic behaviour of these nano-Ni surfaces in relation to P counter-ions in the irradiated solutions. The magnetic properties of these 'as-received' particles have been studied using a vibrating sample magnetometer. The saturation magnetic moment per gram for the Ni particles is 9.38 emu g~(-1), which is 17 percent of the saturation moment of bulk ferromagnetic Ni at room temperature; this can be attributed due to the size effect of these magnetic domains. The symmetric hysteresis loop about the zero-field axis showing negligible loop shift (DELTA H_c approx 3-10 Oe) suggests that Ni particles are free from oxide layers.
机译:关于在高密度数据存储设备和磁性流体中的应用,磁性纳米结构引起了极大的兴趣。我们已经通过化学溶液的X射线辐照制备了磁性纳米颗粒(约7.5 nm),并对其结构和磁性进行了研究。有趣的是,我们发现这些镍纳米粒子的形成是在室温过程中自发发生的,主要发生在电解质pH值为8.2的情况下。在化学溶液照射过程中产生的水合电子似乎在纳米粒子的自发形成和生长中起决定性作用。仅在更长的高P含量溶液辐照时,才可能在这些纯Ni核上发生表面合金化和/或涂层。这表明这些纳米镍表面相对于辐照溶液中的P抗衡离子可能具有催化作用。这些“按原样”颗粒的磁性已经使用振动样品磁力计进行了研究。 Ni颗粒的每克饱和磁矩为9.38 emu g〜(-1),是室温下块状铁磁Ni的饱和磁矩的17%。这可以归因于这些磁畴的尺寸效应。零场轴周围的对称磁滞回线显示出可忽略不计的回线偏移(ΔH_c约为3-10 Oe)表明Ni颗粒不含氧化物层。

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