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Structural, physical, magnetic and electrical properties of La-substituted W-type hexagonal ferrites

机译:La取代的W型六角型铁氧体的结构,物理,磁和电性能

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Lanthanum doped W-type hexaferrites BaZn_2La_xFe_(16-x)O_(27) (x = 0, 0.2, 0.4, 0.6, 0.8, 1.0) were synthesized by co-precipitation and sintered at 1320 °C. The X-ray diffraction reveals W-type hexagonal structure with few traces of secondary phase. The decrease in grain size as a function of La-concentration is attributed to the fact that La acts as a grain inhibitor. The saturation magnetization and remanance decrease due to spin canting on B-sites. The increase in coercivity follows 1/r behavior where r is the radius of grain. The DC resistivity was observed to increase from 0.59 × 10~7 to 8.42 × 10~7 Ω cm with increasing La-contents due to the unavailability of Fe~(3+) ions. This enhancement in resistivity makes these materials promising candidates for use at high frequencies in order to reduce eddy current losses.
机译:通过共沉淀合成镧掺杂的W型六方铁氧体BaZn_2La_xFe_(16-x)O_(27)(x = 0、0.2、0.4、0.6、0.8、1.0),并在1320°C下烧结。 X射线衍射显示W型六角形结构,几乎没有次生相痕迹。晶粒尺寸作为La浓度的函数的减小归因于La充当晶粒抑制剂的事实。饱和磁化强度和剩磁由于B位置的自旋倾斜而降低。矫顽力的增加遵循1 / r行为,其中r是晶粒的半径。由于Fe〜(3+)离子的不存在,随着La含量的增加,直流电阻率从0.59×10〜7增加到8.42×10〜7Ωcm。电阻率的提高使这些材料有望用于高频,以减少涡流损耗。

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