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锆和镝取代的铋铁氧体薄膜的可调谐光学和多铁性特性

Tunable Optical and Multiferroic Properties of Zirconium and Dysprosium Substituted Bismuth Ferrite Thin Films.

作者信息

Priya A Sathiya, Geetha D, Siqueiros J M, Ţălu Ștefan

机构信息

Department of Physics, Sri Sairam Engineering College, Chennai 600044, Tamil Nadu, India.

Department of Applied Sciences and Humanities, Anna University, MIT Campus, Chennai 600044, Tamil Nadu, India.

出版信息

Molecules. 2022 Nov 4;27(21):7565. doi: 10.3390/molecules27217565.

Abstract

This work presents optical and multiferroic properties of bismuth ferrite thin films that are affected by zirconium and dysprosium substitution. Non-centrosymmetric BiFeO,BiZrFeO, and BiDyFeO thin films were coated on Pt/TiO/SiO/Si substrates using the spin coating method. The crystal structure, optical properties, microstructural, ferromagnetic, and ferroelectric properties of doped bismuth ferrite thin films were systematically investigated. From the XRD patterns, all the prepared thin films matched well with the rhombohedral structure with space group with no observed impurity phases. The average crystallite size of the bismuth ferrite thin films were between 35 and 47 nm, and the size depended on the type of dopant. The determined energy band gap values of BiFeO, BiDyFeO, and BiZrFeO thin films were 2.32 eV, 2.3 eV, and 2 eV, respectively. Doping of Dy and Zr at the Bi site led to reduced surface roughness. The prepared thin films exhibited enhanced ferromagnetic and ferroelectric properties. The remnant magnetization of Zr-doped BiFeO was greater than that of the BiFeO and Dy-doped BiFeO thin films. From the obtained results, it was concluded that Zr-doped BiFeO thin films are suitable for solar cell fabrication.

摘要

这项工作展示了受锆和镝取代影响的铋铁氧体薄膜的光学和多铁性特性。采用旋涂法在Pt/TiO/SiO/Si衬底上制备了非中心对称的BiFeO、BiZrFeO和BiDyFeO薄膜。系统研究了掺杂铋铁氧体薄膜的晶体结构、光学性能、微观结构、铁磁性和铁电性能。从XRD图谱来看,所有制备的薄膜都与具有空间群的菱面体结构匹配良好,未观察到杂质相。铋铁氧体薄膜的平均晶粒尺寸在35至47纳米之间,且尺寸取决于掺杂剂类型。BiFeO、BiDyFeO和BiZrFeO薄膜的测定带隙值分别为2.32电子伏特、2.3电子伏特和2电子伏特。在Bi位掺杂Dy和Zr导致表面粗糙度降低。制备的薄膜表现出增强的铁磁性和铁电性能。Zr掺杂的BiFeO的剩余磁化强度大于BiFeO和Dy掺杂的BiFeO薄膜。从所得结果得出结论,Zr掺杂的BiFeO薄膜适用于太阳能电池制造。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/968d/9656658/c2f7b862ac08/molecules-27-07565-g001.jpg

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