Exploring the structural, magnetic, and dielectric properties of Fe and Y substituted NiCr2O4

被引:0
|
作者
Barman, Junmoni [1 ]
Verma, Shalini [1 ]
Ravi, S. [1 ]
机构
[1] Indian Inst Technol Guwahati, Dept Phys, Gauhati 781039, Assam, India
关键词
A. Spinel chromites; B. Sol-gel process; C. Magnetic properties; C. Dielectric response; D. Electron spin resonance; SPINEL CHROMITES; MFE2O4; M; CO; FERRITES; TRANSITION; SCATTERING; RESONANCE;
D O I
10.1016/j.jallcom.2024.175680
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
This paper presents the successful single phase synthesis of NiCr2O4 and NiFe0.50Cr1.50-xYxO4 (x = 0 - 0.08) compounds followed by an investigation into their structural, magnetic and dielectric properties. The structural analysis confirms tetragonal structure for NiCr2O4 while a partially inverse cubic spinel structure for Fe and Y substituted samples (x = 0 - 0.08). Fe substitution (x = 0) induces a shift in room temperature hysteresis loop behaviour from paramagnetic to ferrimagnetic, suggesting enhanced superexchange interactions and a significant rise in magnetic transition temperature beyond room temperature. However, it is found that further inclusion of Y (x = 0.04 - 0.08) leads to a slight weakening of superexchange interactions. The saturation magnetization increases with Y substitution, while coercivity and magnetocrystalline anisotropy follows a decreasing trend. The complex impedance studies unveil a relaxation phenomenon and the dielectric constant is found to increase with the substitution of Fe and Y. Analysis of temperature dependent ac conductivity data and the frequency exponent profile suggests small polaron hopping as the predominant transport mechanism up to 380 K in NiCr2O4 and x = 0 samples, shifting to large polaron hopping beyond this temperature. In samples with x =0.04 and 0.06 the transport mechanism is found to follow the small polaron tunneling model. However, in the x = 0.08 sample, large polaron tunneling becomes predominant beyond 365 K.
引用
收藏
页数:15
相关论文
共 50 条
  • [41] Magnetocapacitance as a sensitive probe of magnetostructural changes in NiCr2O4
    Sparks, Taylor D.
    Kemei, Moureen C.
    Barton, Phillip T.
    Seshadri, Ram
    Mun, Eun-Deok
    Zapf, Vivien S.
    PHYSICAL REVIEW B, 2014, 89 (02)
  • [42] Study of exchange bias and training effect in NiCr2O4
    Barman, Junmoni
    Bora, Tribedi
    Ravi, S.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2015, 385 : 93 - 98
  • [43] The obtaining of NiCr2O4 nanoparticles by unconventional synthesis methods
    Mircea Ştefănescu
    Mirela Barbu
    Paul Barvinschi
    Oana Ştefănescu
    Journal of Thermal Analysis and Calorimetry, 2013, 111 : 1121 - 1127
  • [44] Synthesis and radiographical analysis of nickel chromite, NiCr2O4
    Holgersson, S
    ZEITSCHRIFT FUR ANORGANISCHE UND ALLGEMEINE CHEMIE, 1932, 204 (04): : 382 - 384
  • [45] Study on the preparation and properties of NiCr2O4/TiO2 thin film photoanode
    Hu, Zhi-Qiang
    Liu, Xian-Qing
    Huang, De-Feng
    Gao, Hong
    Gongneng Cailiao/Journal of Functional Materials, 2011, 42 (SUPPL. 5): : 961 - 963
  • [46] Enhanced magnetodielectric response in Dy modified NiCr2O4
    Mandal, P. R.
    Singh, Ripandeep
    Das, A.
    Sarkar, Tarapada
    Nath, T. K.
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2017, 432 : 49 - 55
  • [47] Structural, magnetic, and dielectric properties of nanocrystalline Cr-substituted Co0.8Ni0.2Fe2O4 ferrite
    Wahba, Adel Maher
    Mohamed, Mohamed Bakr
    CERAMICS INTERNATIONAL, 2014, 40 (04) : 6127 - 6135
  • [48] Thermodynamic properties of nickel chromite (NiCr2O4) based on adiabatic calorimetry at low temperatures
    S. Klemme
    J. C. van Miltenburg
    Physics and Chemistry of Minerals, 2002, 29 : 663 - 667
  • [49] Synthesis and Characterization of Spinel-Type NiCr2O4 Nanocrystalline
    Hu Zhi-Qiang
    Liu Xian-Qing
    Huang De-Feng
    Gao Hong
    Liu Jing-Xiao
    HIGH-PERFORMANCE CERAMICS VII, PTS 1 AND 2, 2012, 512-515 : 86 - +
  • [50] Magnetic, structural, and dielectric properties of CuB2O4
    Nenert, G.
    Bezmaternykh, L. N.
    Vasiliev, A. N.
    Palstra, T. T. M.
    PHYSICAL REVIEW B, 2007, 76 (14)