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Ferromagnetism in Ag doped TiO_2 nanoparticles synthesized by sol-gel technique

机译:通过溶胶 - 凝胶技术合成的Ag掺杂TiO_2纳米粒子中的铁磁性

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Ag doped TiO_2 (Ag=1, 5, 10, 14 at-wt%) nanoparticles were prepared by sol-gel technique and annealed at 700°C in air atmosphere. An anatase to rutile phase transformation is observed in the 14% Ag:TiO_2 sample. Microscopic images show Ag clusters at the grain boundaries when the dopant concentration was increased beyond 5 at-wt%. The bandgap of the TiO_2 samples becomes narrower with Ag doping, indicating incorporation of Ag in the substitutional sites of the host lattice. Here, we have also studied the effect of Ag doping on the magnetic properties of the samples. The M-H loop indicates that ferromagnetic ordering is maximum in the 5% Ag:TiO_2 sample. We have explained the ferromagnetic ordering by Bound Magnetic Polaron (BMP) theory and concluded that the spin ordering in the samples is an intrinsic phenomenon occurring due to the substituted Ag~+ ion in the TiO_2 lattice.
机译:通过溶胶 - 凝胶技术制备Ag掺杂TiO_2(Ag = 1,5,10,14,Wt%)纳米颗粒,在空气气氛中在700℃下退火。 在14%Ag:TiO_2样品中观察到金红石相转化的锐钛矿。 微观图像显示掺杂剂浓度超过5at%的晶粒边界处的Ag簇。 TiO_2样品的带隙与Ag掺杂变窄,表明在宿主格子的替换位点中的掺入Ag。 在这里,我们还研究了Ag掺杂对样品磁性的影响。 M-H循环表示5%AG:TiO_2样本中最大的铁磁性排序。 我们已经解释了磁极磁解极(BMP)理论的铁磁排序,并得出结论,样品中的旋转排序是由于TiO_2晶格中的取代的Ag〜+离子而发生的内在现象。

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