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Influence of Cr and Zn substitution on structural, magnetic and dielectric properties of Sr2-xZnxNi2Fe28-yCryO46 X-type hexagonal ferrite

机译:Cr和Zn取代对Sr2-XZNXNI2FE28-YCRYO46 X型六方铁素体结构,磁性和介电性能的影响

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Polycrystalline materials of Sr2-xZnxNi2Fe28-yCryO46 (x = 0.00, 0.01, 0.02, 0.03 and 0.04; y = 0.0, 0.2, 0.4, 0.6 and 0.8) X-type nano-ferrites are fabricated by sol-gel synthetic route. The TGA results of the prepared samples showed that these materials have high thermal stability. The analysis of x-ray diffraction patterns is confirmed X-type phase of these materials. The crystallite size was under 50 nm for all samples, which confirmed that these materials lie in nano-scale range. The large value of dielectric constant (91, 123) and moderate loss (0.52, 0.92) of Sr1.98Zn0.02Ni2Fe27.60Cr0.4O46 and Sr1.97Zn0.03Ni2Fe27.40Cr0.6O46 samples respectively were observed. Slope versus concentration graph indicated that the ac conductivity of all the exhibited frequency dependent behavior. Cole-Cole plots exhibited complete semicircle for these materials, which showed the grain boundary resistance inside the samples. The magnetic properties such that saturation, remanent magnetization (M-s,M- M-r), squareness ratio (M-r/M-s), coercivity (H-c), anisotropy constant (K) and magnetic moment are examined from hysteresis loops. The saturation magnetization was increased (45.42-52.45 emu/g) while the coercivity was decreased (414-630 Oe) by substitution of Cr3+-Zn2+. The increase in magnetic moment from 21.08 mu(B) to 24.34 mu(B) was observed by inclusion of Cr3+-Zn2+. The multi domain nature was evidenced by the smaller squareness ratio (0.36-0.40) of these ferrites. The high saturation magnetization and small coercivity of Sr1.98Zn0.02Ni2Fe27.60Cr0.4O46, Sr1.97Zn0.03Ni2Fe27.40Cr0.6O46 samples was obtained up to 52.45 emu/g, 49.42 emu/g and 345 Oe, 448 Oe respectively, which show their applications for absorption of electromagnetic radiation at microwave region and development of multilayer chip inductors. The dielectric properties of Sr1.98Zn0.02Ni2Fe27.60Cr0.4O46 and Sr1.97Zn0.03Ni2Fe27.40Cr0.6O46 ferrites showed that these materials might be consider for the development of super-capacitor devices.
机译:通过溶胶 - 凝胶合成途径制造了多晶材料的SR2-XZNXNI2FE2525(x = 0.00,0.02,0.03和0.04,0.02,0.03和0.04,0.6和0.8)X型纳米铁氧体。制备样品的TGA结果表明,这些材料具有高热稳定性。 X射线衍射图案的分析得到了这些材料的X型阶段。所有样品的微晶尺寸低于50nm,证实这些材料位于纳米级范围内。观察到分别的介电常数(91,123)和中等损耗(0.52,0.92)的介电常数(91,123)的大值。分别观察到SR1.98ZN0.02NI2FE27.60CR0.4O46和SR1.97ZN0.03NI2FE27.40CR0.6O46样品。斜率与浓度图表明所有表现出频率相关行为的交流电导率。 COLE-COLE图表为这些材料表现出完全半圆形,其显示样品内部的晶界抗缘。从滞后环检查磁性,使饱和度,刚性磁化(M-S,M-M-R),平方率(M-R / M-S),矫顽力(H-C),各向异性常数(k)和磁矩。饱和磁化强度增加(45.42-52.45 emu / g),同时通过取代Cr3 + -Zn2 +来降低(414-630 OE)。通过包含Cr3 + -Zn2 +,观察到21.08μm(b)至24.34μ(b)的磁矩的增加。这些铁氧体的平方率较小(0.36-0.40)较小,可以证明多领域性质。获得高饱和磁化和小矫顽力SR1.98ZN0.02NI2FE2F2FE27.60CR0.4O46,SR1.97ZN0.03NI2FE27.40CR0.6O46样品,得到高达52.45兆欧/克,49.42兆欧/克,49.42兆欧/克和345 oE,448 oE显示它们在微波区的电磁辐射吸收的应用以及多层芯片电感的开发。 SR1.98ZN0.02NI2FE27.60CR0.4O46和SR1.97ZN0.03NI2FE27.40CR0.6O46铁氧体的介电性能表明,这些材料可能考虑开发超级电容器装置。

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