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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Exchange-Bias and Grain-Surface Relaxations in Nanostructured NiO/Ni Induced by a Particle Size Reduction
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Exchange-Bias and Grain-Surface Relaxations in Nanostructured NiO/Ni Induced by a Particle Size Reduction

机译:粒径减小引起的纳米结构NiO / Ni中的交换偏向和晶粒表面弛豫

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Transition-metal-oxide/transition-metal nanocomposites, such as NiO/Ni, FeO/Fe, and CoO/Co, have been the subject of much recent investigation (i) because of their potential applications and (ii) because they are good model systems for studies of some effects on the nanoscale. They are used, for example, as catalysts, fuel-cell electrodes, magnetic memories, etc. When a nanocomposite is composed of both ferromagnetic (FM) and antiferromagnetic (AFM) nanoparticles, interesting physical properties can occur, such as the phenomenon of exchange bias (EB). A Ni/NiO nanocomposite obtained by the thermal decomposition of nickel(II) acetate tetrahydrate, Ni(CH3COO)2-4H2O, at 300 ℃ is composed of NiO (62%) and Ni (38%) with crystallite sizes of 11 and 278 nm, respectively. We observed an increase in the crystallite size for NiO and decrease of crystallite size for Ni, a decrease in the microstrain for both and an increase in the NiO phase content with thermal annealing in air, while high-energy ball milling leads to a decrease of the crystallite size, an increase in the sizeof the agglomerates, and microstrain as well as reduction, NiO → Ni. The lattice parameters of the nanosized NiO and Ni show a deviation from the value for the bulk counterparts as a consequence of crystallite size reduction and the grain-surface relaxation effect. The exchange bias found in a milled sample with particles of 10 nm (NiO) and 1.1 nm (Ni) disappears for larger particles as a consequence of a coupling-area decrease between the antiferromagnetic and ferromagnetic particles. Due to reduction/oxidation(NiO ←→ Ni) and size as well as surface-relaxation effects the saturation magnetization value increases/decreases with milling/annealing, respectively. Having in mind the effect of size on the exchange bias, coercivity, and magnetization values, it is possible, by annealing/milling, to tailor the composition and particle size and then control the exchange bias and improve the other magnetic properties of the Ni/NiO.
机译:NiO / Ni,FeO / Fe和CoO / Co等过渡金属氧化物/过渡金属纳米复合材料(i)由于其潜在的应用和(ii)因为它们的良好性能而成为最近的研究对象。模型系统,以研究对纳米尺度的某些影响。它们例如用作催化剂,燃料电池电极,磁存储器等。当纳米复合材料由铁磁性(FM)和反铁磁性(AFM)纳米粒子组成时,可能会出现有趣的物理性质,例如交换现象偏见(EB)。通过四水合乙酸镍(II)四水合的Ni(CH3COO)2-4H2O在300℃下热分解得到的Ni / NiO纳米复合材料,由NiO(62%)和Ni(38%)组成,晶粒尺寸分别为11和278纳米。我们观察到,在空气中进行热退火后,NiO的晶粒尺寸增加,Ni的晶粒尺寸减小,两者的微应变都降低,并且NiO相含量增加,而高能球磨导致NiO的晶粒尺寸减小。 NiO→Ni的微晶尺寸,团聚体尺寸的增加,微应变以及还原的增加。纳米尺寸的NiO和Ni的晶格参数由于晶粒尺寸减小和晶粒表面弛豫效应而显示出与体相值的偏差。由于反铁磁颗粒和铁磁颗粒之间的耦合面积减小,较大颗粒的研磨样品中发现的交换偏压对于10 nm(NiO)和1.1 nm(Ni)的颗粒消失。由于还原/氧化(NiO←→Ni)和尺寸以及表面松弛效应,饱和磁化强度值分别随着铣削/退火而增加/减小。考虑到尺寸对交换偏压,矫顽力和磁化值的影响,可以通过退火/研磨来调整组成和粒径,然后控制交换偏压并改善Ni /的其他磁性氧化镍

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