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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Structure-property trends in a hollandite multiferroic by Fe doping: structural, magnetic and dielectric characterization of nanocrystalline BaMn3-xFexTi4O14+delta
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Structure-property trends in a hollandite multiferroic by Fe doping: structural, magnetic and dielectric characterization of nanocrystalline BaMn3-xFexTi4O14+delta

机译:Fe掺杂的荷兰钛矿多二二异种结构趋势:纳米晶BAMN3-Xfexti4O14 + Delta的结构,磁性和介电表征

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摘要

BaMn3Ti4O14+delta(delta= 0.25, BMT-134), a recently discovered single-phase multiferroic complex oxide was doped with varying concentrations of Fe in order to assess the effect on magnetic and dielectric behavior. The novel compound BaMn3-xFexTi4O14+delta(BMFT) was preparedviaa sol-gel chemical solution processing method. Four substituted variations were synthesized: BaMn3-xFexTi4O14+delta(BMFT) withx= 1, 1.5, 2, and 2.25. The approach afforded a nanocrystalline product, with control over structure and morphology, while successfully allowing increasing amounts of iron to be incorporated into the structure. All variants belong to the same hollanditeI4/mcrystal class as the parent compound, confirmed by powder XRD. Electron microscopy (TEM, EDS and SEM) provided characterization of the microstructure and elemental composition. Mossbauer spectroscopy was used to probe the local chemical environment of Fe present within the nanocrystals, to indicate oxidation state and bonding geometry. The BMFT material system was characterized as a function of temperature and applied magnetic field:M-TandM-Hcurves were obtained (by MPMS) and allowed the determination of Curie/Weiss constants through fitting and low temperature hysteresis respectively. The Weiss constant becomes increasingly positive as Fe is added until an observed inflection point, indicative of an antiferromagnetic to paramagnetic short-range interaction transition. The frequency dependent dielectric permittivity of the series of BMFT compounds with differing Fe concentration, was obtained on MIM structures prepared from pressed pellets with a nanostructured morphology. The results show how Fe concentration can strongly influence dielectric behavior. Dielectric constants ranging from 100-1600 (low frequencies) to 150-200 (high frequencies) were observed, together with a decrease in the AC conductivity with increasing Fe.
机译:BAMN3TI4O14 + DELTA(DELTA = 0.25,BMT-134),最近发现的单相多体红氧化物掺杂有不同的FE浓度,以评估磁性和介电行为的影响。制备了新型化合物BamN3-Xfexti4O14 + Delta(BMFT)的制备卓索溶胶 - 凝胶化学溶液加工方法。合成了四种取代的变化:BAMN3-XFEXTI4O14 + DELTA(BMFT)用x = 1,1.5,2和2.25。该方法提供了一种纳米晶体产品,具有控制结构和形态,同时成功地允许掺入结构中的熨斗。所有变体属于与母体化合物相同的荷兰特蒂4 / mcrystal类,由粉末XRD确认。电子显微镜(TEM,EDS和SEM)提供了微观结构和元素组成的表征。莫斯鲍尔光谱法用于探测纳米晶体内存在的局部化学环境,以表示氧化状态和粘接几何形状。 BMFT材料系统的特征在于温度和施加磁场的函数:获得(通过MPMS)获得M-TANDM-HCurves,并允许通过拟合和低温滞后确定居里/韦斯常数。由于加入Fe直到观察到的拐点,指示副磁性短距离相互作用转变的反铁磁体,卫生常数变得越来越积极。在用纳米结构形态制备的压制粒料制备的MIM结构上获得了具有不同Fe浓度的BMFT化合物的频率依赖性介电常数。结果表明FE浓度如何强烈影响介电行为。观察到从100-1600(低频)到150-200(高频)的介电常数,随着Fe的增加而降低交流电导率。

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