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首页> 外文期刊>Microelectronics international: Journal of ISHM--Europe, the Microelectronics Society--Europe >Influence of Mg2+ substitution on the magnetic and electrical properties of Li-Zn ferrite thick films synthesized with PVA matrix
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Influence of Mg2+ substitution on the magnetic and electrical properties of Li-Zn ferrite thick films synthesized with PVA matrix

机译:Mg2 +取代对PVA基体合成的Li-Zn铁氧体厚膜磁性能和电性能的影响

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Purpose - The purpose of this paper is to investigate the effect of Mg2+ substitution on the magnetic and electrical properties of Li0.35-x Mg-2x Zn-0.3 Fe2.35-xO4 thick films synthesized with polyvinyl alcohol (PVA) matrix. Design/methodology/approach - The nanoferrites Li0.35-x Mg-2x Zn-0.3 Fe2.35-xO4 (x = 0, 0.07, 0.14, 0.21, 0.28 and 0.35) were synthesized by chemical technique using aqueous solution of PVA (the matrix) and thick films were fabricated by screen printing technique. The DC magnetic hysteresis measurements, AC magnetic susceptibility and DC electrical resistivity were measured as a function of temperature. Findings - The lattice parameter of thick film Li0.35-x Mg-2x Zn-0.3 Fe2.35-xO4 (x = 0, 0.07, 0.14, 0.21, 0.28 and 0.35) increases with the substitution of Mg2+ ions for Li1+ and Fe3+. The surface morphology of the thick films showed the grain size increasing with Mg2+ substitution till x = 0.21 and then decreasing for the higher concentrations of magnesium. The magnetic moment n(B) (mu(B)) computed from the M-s obtained by extrapolation of the magnetization curve showed a gradual decrease with the composition till x = 0.21, beyond which a sudden decrease was observed. The resistivity of the films at room temperature had variation with composition x, similar to that of magnetic moment. The activation energies Delta E-F and Delta E-P were found to vary with composition x of the ferrite system. Originality/value - The paper reports, for the first time, the magnetic and electrical properties of fritless Li0.35-xMg2xZn0.3Fe2.35-xO4 thick films using PVA polymer matrix. Up to x = 0.21 (Mg2+), grain size increases and Curie temperature decreases beyond which reverse effect takes place.
机译:目的-本文的目的是研究Mg2 +取代对用聚乙烯醇(PVA)基质合成的Li0.35-x Mg-2x Zn-0.3 Fe2.35-xO4厚膜的磁性和电学性质的影响。设计/方法/方法-使用PVA水溶液通过化学技术合成了纳米铁氧体Li0.35-x Mg-2x Zn-0.3 Fe2.35-xO4(x = 0、0.07、0.14、0.21、0.28和0.35)。通过丝网印刷技术制备厚膜。测量DC磁滞测量值,AC磁化率和DC电阻率随温度的变化。发现-厚膜Li0.35-x Mg-2x Zn-0.3 Fe2.35-xO4(x = 0、0.07、0.14、0.21、0.28和0.35)的晶格参数随Mg2 +离子替代Li1 +和Fe3 +的增加而增加。厚膜的表面形貌表明,随着Mg2 +的取代,晶粒尺寸增大,直到x = 0.21,然后随着较高的镁浓度而减小。由磁化曲线外推得到的M-s计算出的磁矩n(B)(mu(B))随组成的变化逐渐减小,直到x = 0.21,然后观察到突然减小。薄膜在室温下的电阻率随组成x的变化而变化,类似于磁矩。发现活化能ΔE-F和ΔE-P随铁氧体体系的组成x而变化。原创性/价值-该论文首次报道了使用PVA聚合物基体的无粉Li0.35-xMg2xZn0.3Fe2.35-xO4厚膜的磁性和电学性质。当x = 0.21(Mg2 +)时,晶粒尺寸增加,居里温度降低,超过此温度则发生反向作用。

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