Role of Bi-excess on structural, electrical, optical, and magnetic properties BiFeO3 nanoparticles

被引:6
|
作者
Kumari, Anju [1 ]
Kumari, Kavita [2 ]
Ahmed, Faheem [3 ]
Ahmad, Mohamad M. [3 ]
Sharma, Jyotsna [1 ]
Vij, Ankush [4 ]
Kumar, Shalendra [3 ,4 ]
机构
[1] Amity Univ Haryana, Amity Sch Appl Sci, Dept Appl Phys, Elect Mat & Nanomagnetism Lab, Gurgaon 122413, India
[2] Changwon Natl Univ, Sch Mat Sci & Engn, Chang Won 51140, Gyeongnam, South Korea
[3] King Faisal Univ, Coll Sci, Dept Phys, POB 400, Al Hufuf 31982, Al Ahsa, Saudi Arabia
[4] Univ Petr & Energy Studies, Dept Phys, Dehra Dun 248007, Uttarakhand, India
关键词
IMPEDANCE SPECTROSCOPY;
D O I
10.1007/s10854-021-06860-z
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
The influence of Bi content on structural, optical, and multiferroic properties of BiFeO3 has been studied. The nanoparticles of BiFeO3 with different Bi content such as Bi(0.00)Fe0(3), Bi0.03FeO3, Bi0.05FeO3, Bi0.07FeO3, and Bi0.10FeO3 have been prepared using the nitric acid-assisted sol-gel method. The structural analysis of XRD patterns via Rietveld refinement revealed rhombohedral structure with R3c phase along with the minor secondary phase of Bi2Fe4O9. The crystallite size calculated using Scherrer's formula was found to be in the range 56 nm similar to 41 nm. The lattice parameters and density were found in the range 8.78-8.81 angstrom and 6.10-6.13 g/cm(3), respectively. The highest value of maximum polarization and remnant polarization were found to be 1.15 mu C/cm(2) and 0.90 mu C/cm(2), respectively, for Bi0.05FeO3 nanoparticles. The Bi0.05FeO3 nanoparticles also showed a high dielectric constant with a smaller dielectric loss. The grain and grain boundaries have shown excellent electrical behavior as investigated via impedance, Modulus, and ac conductivity. The UV-Vis spectroscopy demonstrated that the Bi0.05FeO3 nanoparticles show the maximum bandgap of similar to 1.96 eV. The dc magnetization results infer the weak ferromagnetic behavior of the Biexcess-BiFeO3 nanoparticles and indicate a maximum saturation magnetization of 0.24 emu/g for Bi0.05FeO3 nanoparticles.
引用
收藏
页码:23968 / 23982
页数:15
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