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Preparation of phase homogeneous Mn-Zn ferrite powder by spray pyrolysis

机译:喷雾热解法制备相均匀的锰锌铁氧体粉末

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摘要

Two kinds of aqueous precursor solutions are used to synthesize Mn-Zn ferrite powders: (i) nitrate (NO) precursor-derived from solutions of Mn(NO_3)_2, Zn(NO_3)_2, and Fe(NO_3)_3; and (ii) acetate (AC) precursor—derived from solutions of Mn(CH_3COO)_2, Zn(CH_3COO)_2, and Fe(NO_3)_3. The composition of the powders synthesized from the precursor AC is very uniform, whereas powders derived from the precursor NO have Mn and Zn segregated on the particle surfaces. In addition, the powders synthesized from precursor AC are solid spherical particles with fine porosity, whereas many hollow and fragmented particles are observed in the powder derived from precursor NO. Overall, the properties of Mn-Zn ferrite cores prepared from the precursor AC are superior to those prepared from the precursor NO. The reasons for the differences are explained and described in detail. The AC precursor powders synthesized by spray pyrolysis produced Mn-Zn ferrite cores with good magnetic properties.
机译:两种水性前驱体溶液可用于合成Mn-Zn铁氧体粉末:(i)源自Mn(NO_3)_2,Zn(NO_3)_2和Fe(NO_3)_3的硝酸盐(NO)前驱体; (ii)乙酸盐(AC)前体-源自Mn(CH_3COO)_2,Zn(CH_3COO)_2和Fe(NO_3)_3的溶液。由前体AC合成的粉末的组成非常均匀,而由前体NO衍生的粉末具有在颗粒表面偏析的Mn和Zn。另外,由前体AC合成的粉末是具有细孔的固体球形颗粒,而在由前体NO衍生的粉末中观察到许多中空和破碎的颗粒。总体而言,由前体AC制备的Mn-Zn铁氧体磁芯的性能优于由前体NO制备的。差异的原因将得到详细解释和描述。通过喷雾热解法合成的AC前驱体粉末可生产出具有良好磁性的Mn-Zn铁氧体磁心。

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