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Preparation, structural and magnetic characterization of synthetic anti-ferromagnetic (SAF) nanoparticles

机译:合成反铁磁(SAF)纳米粒子的制备,结构和磁性表征

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Synthetic anti-ferromagnetic nanoparticles (SAFs) are a novel type of magnetic nanoparticle (MNP) fabricated using nanoimprint lithography, direct deposition of multilayer films and retrieval in liquid phase via an 'etching' release process. Such physical fabrication techniques enable accurate control of particle shape, size and composition. We systematically varied the processing conditions to produce different configurations of SAF nanoparticles and performed extensive characterization using transmission electron microscopy (TEM) and alternating gradient magnetometry (AGM) to study their corresponding structural and magnetic behavior. A key focus of this paper is the preparation of TEM cross-section specimens of SAF nanoparticles for their structural characterization. This is not a trivial task, but is useful and revealing in terms of structural features. A major finding from our study shows that the introduction of oxygen during deposition of the copper release layer gives significantly improved flatness of the multilayer structure but no significant change in the magnetic properties. Magnetic measurements show that these nanoparticles have nearly zero magnetic remanence, a linear response of magnetization and more than twice the saturation magnetization compared to iron oxide nanoparticles.
机译:合成反铁磁性纳米粒子(SAFs)是一种新型的磁性纳米粒子(MNP),其使用纳米压印光刻技术,直接沉积多层膜并通过“蚀刻”释放过程在液相中进行回收。这种物理制造技术能够精确控制颗粒的形状,大小和组成。我们系统地改变了加工条件,以生产出不同构型的SAF纳米颗粒,并使用透射电子显微镜(TEM)和交替梯度磁法(AGM)进行了广泛的表征,以研究其相应的结构和磁行为。本文的重点是制备SAF纳米颗粒的TEM截面样品,以对其结构进行表征。这不是一项琐碎的任务,而是有用的,并且在结构特征方面具有启示性。我们研究的主要发现表明,在沉积铜释放层的过程中引入氧气可使多层结构的平面度显着提高,但磁性能没有明显变化。磁性测量表明,与氧化铁纳米粒子相比,这些纳米粒子的剩磁几乎为零,磁化强度的线性响应是饱和磁化强度的两倍以上。

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