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Tailoring staircase-like hysteresis loops in electrodeposited trisegmented magnetic nanowires: a strategy toward minimization of interwire interactions

机译:在电沉积的三段磁性纳米线中定制阶梯状磁滞回线:最小化线间相互作用的策略

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摘要

A new strategy to minimize magnetic interactions between nanowires (NWs) dispersed in a fluid is proposed. Such a strategy consists of preparing trisegmented NWs containing two antiparallel ferromagnetic segments with dissimilar coercivity separated by a nonmagnetic spacer. The trisegmented NWs exhibit a staircase-like hysteresis loop with tunable shape that depends on the relative length of the soft- and hard-magnetic segments and the respective values of saturation magnetization. Such NWs are prepared by electrodepositing CoPt/Cu/Ni in a polycarbonate (PC) membrane. The antiparallel alignment is set by applying suitable magnetic fields while the NWs are still embedded in the PC membrane. Analytic calculations are used to demonstrate that the interaction magnetic energy from fully compensated trisegmented NWs with antiparallel alignment is reduced compared to a single-component NW with the same length or the trisegmented NWs with the two ferromagnetic counterparts parallel to each other. The proposed approach is appealing for the use of magnetic NWs in certain biological or catalytic applications where the aggregation of NWs is detrimental for optimized performance.
机译:提出了一种最小化分散在流体中的纳米线(NW)之间的磁性相互作用的新策略。这种策略包括制备三段式NW,其中包含两个反平行的铁磁段,它们的矫顽力不同,并被非磁性垫片隔开。三段式NW表现出阶梯形的磁滞回线,其形状可调,具体取决于软磁段和硬磁段的相对长度以及饱和磁化强度的相应值。通过将CoPt / Cu / Ni电沉积在聚碳酸酯(PC)膜中来制备此类NW。通过在将NW仍嵌入PC膜中时施加适当的磁场来设置反平行对齐。分析计算用于证明,与具有相同长度的单分量NW或具有两个铁磁对应物彼此平行的三段NW相比,具有反平行排列的完全补偿三段NW的相互作用磁能降低了。所提出的方法对于在某些生物或催化应用中使用磁性NW具有吸引力,其中NW的聚集对于优化性能不利。

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