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Novel gas-stabilized iron clusters: synthesis, structure and magnetic behaviour

机译:新型气体稳定的铁团簇:合成,结构和磁行为

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摘要

A novel method for the synthesis of nanostructured films produced by depositing gas-phase magnetic nanoparticles is presented and the properties of the films are reported. The technique mixes metal vapour and small argon clusters produced in a supersonic expansion. The condensed clusters are subsequently deposited in situ onto copper grids. The cluster size is controlled by the vapour pressure of the metal inside the pick-up chamber. Detailed analysis of the transmission electron micrographs of the Fe clusters shows that there is a simple linear relationship between the average metal cluster diameter and the metal vapour pressure during deposition. Furthermore, the nanoparticles show a relatively narrow size distribution for a given set of experimental conditions. Structural and magnetic investigations have been performed on Fe cluster samples, and the influence of the metal vapour pressure has been studied. Detailed analysis of the magnetic and structural data has been performed and valuable information such as cluster size distributions, strength of the interparticle dipolar interactions and average magnetic moment per cluster are derived. It is shown that, at room temperature, the magnetic behaviour of the films is consistent with nanoparticle supermoments interacting via dipolar interactions.
机译:提出了一种通过沉积气相磁性纳米粒子合成纳米结构薄膜的新方法,并报道了薄膜的性能。该技术将金属蒸气与超音速膨胀中产生的小型氩团簇混合在一起。随后将冷凝的团簇原位沉积在铜网上。团簇的大小由拾取室内金属的蒸气压控制。对铁团簇的透射电子显微照片的详细分析表明,在沉积过程中,平均金属团簇直径与金属蒸气压之间存在简单的线性关系。此外,对于给定的一组实验条件,纳米颗粒显示出相对窄的尺寸分布。对铁团簇样品进行了结构和磁性研究,并研究了金属蒸气压的影响。已经对磁性和结构数据进行了详细的分析,并得出了有价值的信息,例如团簇尺寸分布,粒子间偶极相互作用的强度以及每个团簇的平均磁矩。结果表明,在室温下,薄膜的磁行为与通过偶极相互作用相互作用的纳米粒子超矩一致。

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