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Breakdown of magnetism in sub-nanometric Ni clusters embedded in Ag

机译:嵌入Ag中的亚纳米Ni团簇中的磁性分解

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摘要

Downsizing to the nanoscale has opened up a spectrum of new magnetic phenomena yet to be discovered. In this context, we investigate the magnetic properties of Ni clusters embedded in a metallic Ag matrix. Unlike in Ni free-standing clusters, where the magnetic moment increases towards the atomic value when decreasing the cluster size, we show, by tuning the Ni cluster size down to the sub-nanoscale, that there is a size limit below which the clusters become non-magnetic when embedded in Ag. To this end, we have fabricated by DC-sputtering a system composed of sub-nanometer sized and non interacting Ni clusters embedded into a Ag matrix. A thorough experimental characterization by means of structural techniques (x-ray diffraction, x-ray absorption spectroscopy) and DC-magnetization confirms that the cluster size is in the sub-nanometric range and shows that the magnetization of the system is dramatically reduced, reaching only 38% of the bulk value. The experimental system has been reproduced by density functional theory calculations on Nim clusters (m = 1-6, 10 and 13) embedded in Ag. The combination of the experimental and theoretical analysis points out that there is a breakdown of magnetism occurring below a cluster size of six atoms. According to our results, the loss of magnetic moment is not due to Ag-Ni hybridization but to charge transfer between the Ni sp and d orbitals, and the reduced magnetization observed experimentally is explained on the basis of the presence of a narrow cluster size-distribution where magnetic and non-magnetic clusters coexist.
机译:缩小到纳米尺寸已经开辟了尚未发现的一系列新的磁性现象。在这种情况下,我们研究了嵌入金属Ag基体中的Ni团簇的磁性。与Ni自立簇不同,当簇尺寸减小时,磁矩朝着原子值增加,我们通过将Ni簇尺寸调低至亚纳米尺度,表明存在一个尺寸极限,在该尺寸极限以下,簇变成嵌入银时无磁性。为此,我们通过直流溅射制造了一个系统,该系统由亚纳米级大小且无相互作用的Ni团簇嵌入Ag基体中组成。通过结构技术(X射线衍射,X射线吸收光谱法)和直流磁化进行的全面实验表征证实,簇的大小在亚纳米范围内,并且表明系统的磁化强度显着降低,达到仅占总价值的38%。该实验系统通过密度泛函理论计算重现了嵌入Ag中的Nim团簇(m = 1-6、10和13)。实验和理论分析的结合指出,在六原子簇大小以下,会发生磁力分解。根据我们的结果,磁矩的损失不是由于Ag-Ni杂化引起的,而是由于Ni sp和d轨道之间的电荷转移而引起的,实验中观察到的磁化强度降低是基于存在窄的团簇尺寸而解释的,磁性和非磁性团簇共存的分布。

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