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Effect of Sr2+ doping on the structural, electrical and optical properties of BiFeO3

机译:SR2 +掺杂对BIFEO3结构,电气和光学性质的影响

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摘要

Multiferroic nanoparticles of Bi1-xSrxFeO3 (x = 0.00, 0.05, 0.10, 0.15, 0.20) were prepared by sol-gel route and the effect of Sr2+ concentration on the structural, electrical and optical properties have been studied. The average crystallite size of bismuth ferrite calculated from XRD result was 29-50 nm and is consistent with the scanning electron microscopy (SEM). The lattice constants, unit cell volume and porosity are found to increase with the increase in x. Moreover, the dc electrical resistivity was found to decrease with the increase of temperature reflecting the semiconducting nature of the material. Remarkably, the doping of Sr2+ ions are considered to originate small polaron which grows in size with x and reflects a structural distortion at x 0.15. Infrared reflectivity (30-1000 cm(-1)) was used to study the phonon contribution to the intrinsic structural response of the system. Interestingly structural distortion is evident for x 0.15 as observed through high frequency phonon shifts
机译:通过溶胶 - 凝胶途径制备Bi1-XsrxFeO 3(X = 0.00,0.05,0.10,0.15,0.20)的多体纳米颗粒,并研究了SR2 +浓度对结构,电气和光学性质的影响。由XRD结果计算的铋铁素体的平均微晶尺寸为29-50nm,与扫描电子显微镜(SEM)一致。发现晶格常数,单位细胞体积和孔隙率随X增加而增加。此外,发现DC电阻率随着反射材料的半导体性质的温度的增加而降低。值得注意的是,SR2 +离子的掺杂被认为是源于使用X的尺寸而生长的小极化子,并反映X&GT的结构变形; 0.15。红外反射率(30-1000cm(-1))用于研究声子对系统的内在结构响应的贡献。有趣的结构扭曲对于X和GT而言是显而易见的。 0.15通过高频声子移位观察到

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