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Cr3+-substitution induced structural reconfigurations in the nanocrystalline spinel compound ZnFe2O4 as revealed from X-ray diffraction, positron annihilation and Mossbauer spectroscopic studies

机译:Cr3 + -substuol诱导X射线衍射,正电子湮灭和母生菌器光谱研究所揭示的纳米晶尖晶石化合物ZnFe2O4中的结构重新配置

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摘要

In an earlier work, the substitution of Zn2+ ions at the tetrahedral sites of nanocrystalline zinc ferrite (ZnFe2O4) by Ni2+ ions had been observed to cause a transformation from the normal spinel structure to the inverse one. The present study has been undertaken to explore the possibility of a similar change when the Fe3+ ions at the octahedral sites are replaced by Cr3+ ions. Concomitant lattice contraction and a steady decrease of the sizes of the nanocrystallites preceded and then resulted into the inversion of ZnFe2-xCrxO4 from normal spinel to inverse at x >= 0.8. Positron lifetime and coincidence Doppler broadening spectroscopic studies were carried out on the samples and a distinct third positron lifetime component emerged in the range of Cr3+ concentration 0.8 <= x <= 1.6. The new positron trapping sites were the result of the inversion of the spinel structure wherein the Cr3+ ions which substituted the Fe3+ ions at the octahedral sites got shifted to the tetrahedral sites, interchanging their positions with the Zn2+ ions. The incomplete success of inversion led to the generation of vacancy-type defects, which significantly trapped the positrons and the changes in their lifetimes indicated the occurrence of the process. The continued lattice contraction ensured an inverted spinel structure even for the final ZnCr2O4, which in coarse-grained form and at room temperature is a normal spinel. Mossbauer spectroscopic studies also supported the idea of spinel inversion above x = 0.8 through definite changes in the isomer and quadrupole shifts.
机译:在较早的工作中,已经观察到通过Ni2 +离子的纳米晶锌铁素体(ZnFe2O4)的四面体位点处的Zn2 +离子的取代以使从正常尖晶石结构转化为逆一个。已经进行了本研究,以探讨当八面体位点的Fe3 +离子被Cr3 +离子取代时相似变化的可能性。伴随的晶格收缩和纳米晶体的尺寸的稳定降低,然后导致ZnFe2-XCRXO4的反转从正常尖晶石转变为X> = 0.8的逆。正电子寿命和重合多普勒拓宽光谱研究在样品上进行,并且在CR3 +浓度范围内出现的不同的第三正电子寿命组分0.8 <= x <= 1.6。新的正电子捕获位点是尖晶石结构的反转的结果,其中将Fe3 +离子在八面体部位取代的CR3 +离子转移到四面体位点,与Zn2 +离子相互互换。反演的不完全成功导致生成空缺型缺陷,这显着捕获了正弦,并且其寿命的变化表明了该过程的发生。即使对于最终ZnCR2O4,仍然是倒尖晶石结构的倒置尖晶石结构,其在粗粒形式和室温下是正常尖晶石。莫斯鲍尔光谱研究还支持X = 0.8以上尖晶石反转的思想,通过异构体和四极偏移的明确变化。

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  • 来源
    《RSC Advances》 |2015年第80期|共10页
  • 作者单位

    Mahatma Gandhi Univ Sch Pure &

    Appl Phys Kottayam 686560 Kerala India;

    Mahatma Gandhi Univ Sch Pure &

    Appl Phys Kottayam 686560 Kerala India;

    Mahatma Gandhi Univ Int &

    Inter Univ Ctr Nanosci &

    Nanotechnol Kottayam 686560 Kerala India;

    Mahatma Gandhi Univ Sch Pure &

    Appl Phys Kottayam 686560 Kerala India;

    Ctr Variable Energy Cyclotron Dept Atom Energy Kolkata 700064 India;

    Saha Inst Nucl Phys Appl Nucl Phys Div Kolkata 700064 India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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