Exposition of structural, microstructural and optical properties of Mg and Zr doped BiFeO3 for profound optoelectronic device applications

M. Mishra, R. N. Mahaling
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Abstract

ABSTRACTMagnesium (Mg) and zirconium (Zr) doped bismuth ferrite (BiFeO3; BFO) ceramics such as Bi1−xMgxFeO3 (Mg doped BFO; BMO), BiFe1−xZrxO3 (Zr doped BFO; BZO) and Bi1−xMgxFe1−xZrxO3 (both Mg and Zr doped BFO; BMZO) with x = 0 and 0.1 were synthesized by solid-state reaction techniques. The distorted rhombohedral structures of doped BFO were confirmed by X-ray diffraction analysis. The microstructural analysis revealed that there were uniform dispersions and homogeneous distributions of ceramics in BMZO as compared to BMO, BZO and plane BFO. The optical properties signified that BMZO having the lowest optical band gap had profound optical performance in optoelectronic device applications than that of BMO, BZO and plane BFO.
阐述了Mg和Zr掺杂BiFeO3的结构、微观结构和光学性质,在光电器件中的广泛应用
摘要:镁(Mg)和锆(Zr)掺杂铋铁氧体(BiFeO3);BFO)陶瓷如Bi1−xMgxFeO3 (Mg掺杂BFO);BMO)、BiFe1−xZrxO3 (Zr掺杂BFO;BZO)和Bi1−xMgxFe1−xZrxO3(均为Mg和Zr掺杂BFO;采用固相反应技术合成了x = 0和0.1的BMZO。通过x射线衍射分析证实了掺BFO的畸变菱形结构。显微组织分析表明,与BMO、BZO和面BFO相比,BMZO中陶瓷的分散均匀,分布均匀。光学性质表明,具有最低光学带隙的BMZO在光电器件应用中比BMO、BZO和平面BFO具有更优异的光学性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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