Structural, dielectric and magnetic characteristics of Mn-substituted Bi0.80Nd0.20FeO3 multiferroics

被引:2
|
作者
Jangra, Sandhaya [1 ]
Sanghi, Sujata [2 ]
Agarwal, Ashish [2 ]
Khasa, Satish [3 ]
Rangi, Manisha [4 ]
机构
[1] Govt Coll Women, Badhra Charkhi Dadri 127308, Haryana, India
[2] Guru Jambheshwar Univ Sci & Technol, Dept Phys, Hisar 125001, Haryana, India
[3] Deenbandhu Chhotu Ram Univ Sci & Technol, Dept Phys, Mat Res Lab, Sonepat 131039, Haryana, India
[4] Vaish Coll, Rohtak 124001, Haryana, India
来源
关键词
Multiferroics; Perovskite; Phase transition; Rietveld refinement; Dielectric properties; CRYSTAL-STRUCTURE REFINEMENT; ELECTRICAL-CONDUCTIVITY; SR; BA; ND;
D O I
10.1007/s00339-021-04684-6
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Recently, investigations have been focused on modified BiFeO3 multiferroics for obtaining improved physical properties. Keeping this in view, multiferroics having composition Bi0.80Nd0.20Fe1 - xMnxO3 (x = 0.01, 0.03 and 0.05) have been synthesized using solid-state reaction method. The crystal structure was examined by X-ray diffraction technique and Rietveld refinement. All unit cells were described by a combination of rhombohedral (R3c) and orthorhombic (Pbnm) phase. Increasing Mn content results in phase transformation with increasing orthorhombic character and major contribution by rhombohedral symmetry for all samples. Dielectric measurements carried out by impedance/gain phase analyzer in the frequency range from 10 Hz to 1 MHz. Dielectric constant (eMODIFIER LETTER PRIME) and loss tangent (tan delta) show dispersion in the lower frequency range. The characteristics of the Nyquist plot confirmed the non-Debye type of relaxation processes with negative temperature coefficient behaviour of resistance (NTCR) in the ceramics. A strong variation in impedance is observed with Mn content also confirmed by conductivity analysis. The variation of 's' with temperature described that conduction mechanism is overlapping of large polaron tunnelling for x = 0.01, 0.03 and for x = 0.05 the appropriate mechanism is small polaron tunnelling. Magnetic measurements indicate the change in ferromagnetic character which might be due to a small change in structural parameters and maximum remanent magnetization is M-r = 0.023 emu/g and coercive field is H-c = 0.760 kOe for x = 0.05. These prepared materials with improved multiferroic properties may lead to many technical applications, such as sensors, transducers and memory devices, etc.
引用
收藏
页数:14
相关论文
共 50 条
  • [41] Study Of Structural And Dielectric Properties Of Mn Doped Bi0.90Pr0.10FeO3 Ceramics
    Tuteja, Muskaan
    Sanghi, Sujata
    Yadav, Manisha
    Bhasin, Tanvi
    DAE SOLID STATE PHYSICS SYMPOSIUM 2018, 2019, 2115
  • [42] The effect of Mn doping contents on the structural, dielectric and magnetic properties of multifenoic Bi5Ti3FeO15 Aurivillius ceramics
    Tang, Kai
    Bai, Wei
    Liu, Jia
    Yang, Jing
    Zhang, Yuanyuan
    Duan, Chun-gang
    Tang, Xiaodong
    Chu, Junhao
    CERAMICS INTERNATIONAL, 2015, 41 : S185 - S190
  • [43] Effect of Pr substitution on structural, magnetic, and optical properties of Bi1-xPrxFe0.80Ti0.20O3 multiferroic ceramics
    Sati, Prakash Chandra
    Arora, Manisha
    Kumar, Manoj
    Tomar, Monika
    Gupta, Vinay
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2017, 28 (01) : 1011 - 1014
  • [44] Structural, dielectric and magnetic properties of Bi-Mn doped SmFeO3
    Nancy
    Shukla, Rishabh
    Dhaka, Raveena
    Dash, Shubhra
    Sahoo, Subasa Chandra
    Bahera, Banarji
    Babu, P. D.
    Choudhary, Ramjanay
    Patra, Ajit Kumar
    CERAMICS INTERNATIONAL, 2020, 46 (07) : 8730 - 8744
  • [45] Effects of BaTiO3 doped on structural and dielectric properties of Bi0.5(Na0.80K0.20)0.5TiO3 ceramic
    Kamnoy, Manlika
    Sutjarittangtham, Krit
    Parjansri, Piewpan
    Intatha, Uraiwan
    Eitssayeam, Sukum
    Raengthon, Natthaphon
    FERROELECTRICS, 2017, 511 (01) : 94 - 103
  • [46] Thermophysical properties of BiFeO3, Bi0.91Nd0.09FeO3, and BiFe0.91Mn0.09O3 multiferroics at high temperatures
    A. I. Klyndyuk
    A. A. Khort
    Physics of the Solid State, 2016, 58 : 1285 - 1288
  • [47] Thermophysical properties of BiFeO3, Bi0.91Nd0.09FeO3, and BiFe0.91Mn0.09O3 multiferroics at high temperatures
    Klyndyuk, A. I.
    Khort, A. A.
    PHYSICS OF THE SOLID STATE, 2016, 58 (06) : 1285 - 1288
  • [48] Structural transition and magnetic properties of Mn doped Bi0.88Sm0.12FeO3 ceramics
    Hien, N. T.
    Vinh, N. D.
    Dang, N. V.
    Trang, T. T.
    Van, H. T.
    Thao, T. T.
    Hue, L. T.
    Tho, P. T.
    RSC ADVANCES, 2020, 10 (20) : 11957 - 11965
  • [49] Effect of Pr substitution on structural, magnetic, and optical properties of Bi1−xPrxFe0.80Ti0.20O3 multiferroic ceramics
    Prakash Chandra Sati
    Manisha Arora
    Manoj Kumar
    Monika Tomar
    Vinay Gupta
    Journal of Materials Science: Materials in Electronics, 2017, 28 : 1011 - 1014
  • [50] Structural, dielectric and energy storage characteristics of (Pb1-xSrx) (Zr0.80Ti0.20)O3 antiferroelectric compositions
    Choudhary, A.
    Priyadarsini, V
    Nair, Varna V.
    Pradeep, Athul
    Jumana, J.
    Kumar, V
    JOURNAL OF ALLOYS AND COMPOUNDS, 2022, 899