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Effects of reaction atmosphere on physico-chemical properties of V-doped FeNb_(11)O_(29)

机译:反应气氛对掺V的FeNb_(11)O_(29)的理化性质的影响

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摘要

FeNb11O29, pure or doped with metal transition ions, is a very promising material with advanced multifunctionalities and interesting applicative perspectives. It is isostructural with Nb12O29, one of the rare compounds in which Nb displays a local magnetic moment and shows both antiferromagnetic ordering and metallic conductivity at low temperatures. In this work we have synthesized and studied Fe0.8V0.2Nb11O29 monoclinic powders. In particular we monitored the effects on structural, electronic and magnetic properties in samples produced in different atmospheres to stabilize cations with different oxidation states.We have demonstrated that the reaction atmosphere influences the phase homogeneity, the crystallite size and the amount of paramagnetic centres, with a transformation of Fe3+ in Fe2+ when an inert atmosphere is used, as proved by the absence, in this case, of any electron paramagnetic resonance signal. Also the Raman spectra result to be affected due to the change of coordination polyhedra. Subsequent re-oxidation of reduced powders brings to the monophasic iron niobate again containing Fe3+ demonstrating the reversibility of redox process. This reversibility is accompanied by a complete restoring of monoclinic structure evidenced by X-ray diffraction data and by Raman measurements, which allowed also to follow in situ the spectral changes induced by laser heating.
机译:纯或掺杂有金属过渡离子的FeNb11O29是一种非常有前途的材料,具有先进的多功能性和有趣的应用前景。它与Nb12O29是同构的,Nb12O29是一种稀有化合物,其中Nb在低温下显示出局部磁矩,并显示出反铁磁有序性和金属电导率。在这项工作中,我们合成并研究了Fe0.8V0.2Nb11O29单斜晶粉末。特别是,我们监测了在不同气氛下产生的样品对结构,电子和磁性能的影响,以稳定具有不同氧化态的阳离子。我们证明了反应气氛会影响相均质性,微晶尺寸和顺磁中心的数量,当使用惰性气氛时,Fe3 +在Fe2 +中的转变,这在这种情况下不存在任何电子顺磁共振信号就可以证明。拉曼光谱结果也由于配位多面体的变化而受到影响。还原粉末的后续再氧化使单相铌酸铁再次含有Fe3 +,这表明氧化还原过程具有可逆性。这种可逆性伴随着X射线衍射数据和拉曼测量结果证明的单斜结构的完全恢复,这也允许原位跟踪由激光加热引起的光谱变化。

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