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Control of Surface Segregation in Bimetallic NiCr Nanoalloys Immersed in Ag Matrix

机译:Ag基体中浸入双金属NiCr纳米合金表面偏析的控制

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摘要

Cr-surface segregation is a main roadblock encumbering many magneto-biomedical applications of bimetallic M-Cr nanoalloys (where M = Fe, Co and Ni). To overcome this problem, we developed Ni95Cr5:Ag nanocomposite as a model system, consisting of non-interacting Ni95Cr5 nanoalloys (5 ± 1 nm) immersed in non-magnetic Ag matrix by controlled simultaneous co-sputtering of Ni95Cr5 and Ag. We employed Curie temperature (TC) as an indicator of phase purity check of these nanocomposites, which is estimated to be around the bulk Ni95Cr5 value of 320 K. This confirms prevention of Cr-segregation and also entails effective control of surface oxidation. Compared to Cr-segregated Ni95Cr5 nanoalloy films and nanoclusters, we did not observe any unwanted magnetic effects such as presence Cr-antiferromagnetic transition, large non-saturation, exchange bias behavior (if any) or uncompensated higher TC values. These nanocomposites films also lose their unique magnetic properties only at elevated temperatures beyond application requirements (≥800 K), either by showing Ni-type behavior or by a complete conversion into Ni/Cr-oxides in vacuum and air environment, respectively.
机译:Cr表面偏析是阻碍双金属M-Cr纳米合金(其中M = Fe,Co和Ni)的许多磁生物医学应用的主要障碍。为了克服这个问题,我们开发了Ni95Cr5:Ag纳米复合材料作为模型系统,该模型系统由非交互作用的Ni95Cr5纳米合金(5±1 nm)浸入非磁性Ag基质中,通过受控的同时共溅射Ni95Cr5和Ag来组成。我们采用居里温度(TC)作为这些纳米复合材料相纯度检查的指标,估计其约为95 K的Ni95Cr5整体值。这证实了Cr的偏析得到防止,并且还需要有效控制表面氧化。与Cr偏析的Ni95Cr5纳米合金薄膜和纳米团簇相比,我们没有观察到任何有害的磁效应,例如Cr-反铁磁跃迁的存在,较大的非饱和度,交换偏压行为(如果有)或未补偿的较高TC值。这些纳米复合材料薄膜还只有在超过应用要求(≥800K)的高温下才会失去其独特的磁性能,这分别是通过显示Ni型行为或分别在真空和空气环境中完全转化为Ni / Cr氧化物来实现的。

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