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Crystallographic inversion-mediated superparamagnetic relaxation in Zn-ferrite nanocrystals

机译:Zn-铁氧体纳米晶体中的晶体反转介导的超顺磁性弛豫

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摘要

Crystallographic inversion induced shift of resonance frequency in zinc ferrite nanoparticle (ZF-NP) samples is studied here. ZF-NP samples were synthesized by a solution-based, low-temperature (200 °C), microwave-assisted solvothermal (MAS) process. Owing to the far-from-equilibrium processing condition, the MAS process produces a very high degree of crystallographic inversion, δ=0.61, in the as-synthesized nanocrystallites. A rapid thermal annealing (RTA) technique was adopted to tune-down crystallographic inversion without altering the crystallite sizes in annealed samples. The crystal structures, particle shapes, and compositions of the nanocrystalline samples were characterized by XRD, SEM and Raman spectroscopy. The samples are phase-pure, with particle size in the range 8-16 nm and their compositions are stoichiometrically accurate. The resonance phenomena in 1 to 10 GHz frequency range was measured by analyzing the impedance mismatch of a microstrip line with the magnetic material loaded on to it. The RTA protocol enables tuning of the resonance phenomena in the ZF-NC samples above 6 GHz with tunable range of ~500 MHz.
机译:在此研究了锌铁氧体纳米颗粒(ZF-NP)样品中共振频率的结晶反演诱导的偏移。通过基于溶液的低温(<200℃),微波辅助溶剂热(MAS)方法合成ZF-NP样品。由于距离平衡的加工条件,MAS工艺在合成的纳米晶体中产生非常高度的晶体反应,δ= 0.61。采用快速的热退火(RTA)技术来调整晶体摄入倒置而不改变退火样品中的微晶尺寸。 XRD,SEM和拉曼光谱表征纳米晶样品的晶体结构,颗粒形状和组合物。样品是相纯的,粒径为8-16nm,它们的组合物是化学计量的准确。通过分析加载到其上的磁性材料的微带线的阻抗不匹配来测量1至10GHz频率范围内的共振现象。 RTA协议使得能够在6 GHz上方的ZF-NC样本中调谐ZF-NC样本,可调范围为500 MHz。

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