Crystallographic characterization and microstructure study of perovskite phase : CaTi1-x(Fe0.5Nb0.5)xO3 (x=0.1-1.0)

被引:0
|
作者
Chourasia, Rashmi [1 ]
Shrivastava, O. P. [1 ]
机构
[1] Dr HS Gour Cent Univ, Dept Chem, Sagar 470003, Madhya Pradesh, India
关键词
X-Ray diffraction; crystal structure; impedance spectroscopy; microstructure; DIELECTRIC-PROPERTIES; CERAMICS; WASTES;
D O I
暂无
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Perovskite phases of iron and niobium substituted calcium titanate (hereafter CTFN) have been synthesized by a combination of precursor and ceramic method. The crystal structure of CaTi1-x(Fe0.5Nb0.5)(x)O-3 (x = 0.1-1.0) phases has been investigated using General Structure Analysis System (GSAS) programming. These phases crystallize in the orthorhombic system with space group Pbnm and Z = 4. Approximately 12 mole% of cations could be loaded into the matrix without significant changes of the three-dimensional framework structure. Powder diffraction data have been subjected to Rietveld refinement to arrive at a satisfactory convergence of R-factors. The unit cell parameters and cell volume increase regularly with increasing level of substitution on titanium site. The polyhedral distortions and bond valence calculation based on bond strength analysis have been reported. Morphology of the samples has been investigated by SEM and TEM analysis. Frequency dependent dielectric behavior of the material has been observed.
引用
收藏
页码:825 / 832
页数:8
相关论文
共 50 条
  • [21] Study of structural, dielectric and electrical behavior of (1-x)Ba(Fe0.5Nb0.5)O3-xSrTiO3 ceramics
    Singh, N. K.
    Kumar, Pritam
    Rai, Radheshyam
    JOURNAL OF ALLOYS AND COMPOUNDS, 2011, 509 (06) : 2957 - 2963
  • [22] Crystal Structure Analysis of Lead Free Ba1-xLax[Ti0.5(Fe0.5Nb0.5)0.5]1-x/4O3 Ceramics
    Patel, Piyush Kumar
    Rani, Jyoti
    Yadav, K. L.
    SOLID STATE PHYSICS, PTS 1 AND 2, 2012, 1447 : 515 - 516
  • [23] Effect of La3+ on microwave dielectric properties of (Pb1-xCax)(Fe0.5Nb0.5)O3 (x=0.5-0.6) ceramics
    Yang, Qiuhong
    Lu, Shenzhou
    Kim, Eung Soo
    Jiang, Yongchang
    Gu, Ying
    INTERNATIONAL JOURNAL OF MATERIALS RESEARCH, 2012, 103 (08) : 1004 - 1006
  • [24] Studies on Stuctural and Electrical Properties of (1-X) Ba(Fe0.5Nb0.5)O3-xSrTiO3, with X=0, 0.05 Ceramics
    Singh, N. K.
    Kumar, P.
    Kumar, H.
    Choudhary, R. N. P.
    XVI NATIONAL SEMINAR ON FERROELECTRICS AND DIELECTRICS (NSFD-XVI), 2011, 1372
  • [25] Structure-property relationships of perovskite-structured Ca0.61Nd0.26Ti1-x(Cr0.5Nb0.5)xO3 ceramics
    Xiong, Zhe
    Yang, Chengtao
    Tang, Bin
    Fang, Zixuan
    Chen, Hetuo
    Zhang, Shuren
    CERAMICS INTERNATIONAL, 2018, 44 (07) : 7384 - 7392
  • [26] Electrical properties and phase transition of Ba(Zr0.05Ti0.95)1-x (Fe0.5Ta0.5)xO3 ceramics
    Kruea-In, C.
    Rujijanagul, G.
    MATERIALS RESEARCH BULLETIN, 2015, 69 : 36 - 40
  • [27] Effect of Fe and Co doping on electrical and thermal properties of La0.5Ce0.5Mn1-x(Fe, Co)xO3 manganites
    Varshney, Dinesh
    Mansuri, Irfan
    Shaikh, M. W.
    Kuo, Y. K.
    MATERIALS RESEARCH BULLETIN, 2013, 48 (11) : 4606 - 4613
  • [28] Preparation and Electrical Properties of (1-x)Ba0.9Sr0.1[Ti0.8(Fe0.5Nb0.5)0.2]O3-xBiZn0.5Ti0.5O3 Ceramics
    Eitssayeam, Sukum
    Inthata, Uraiwan
    Sujarittangtum, Krit
    Inthong, Suchittra
    Parjansri, Piewpan
    Pengpat, Kamonpan
    Rujijanagul, Gobwute
    Tunkasiri, Tawee
    FERROELECTRICS, 2011, 415 : 170 - 175
  • [29] Colossal dielectric constants in Sr(Fe0.5Nb0.5)1- x Mn x O3 prepared by a modified solid-state reaction technique
    Sanjoom, Ratabongkot
    Jaita, Pharatree
    Chokethawai, Komsanti
    Randorn, Chamnan
    Watcharapasorn, Anucha
    Phatungthane, Thanatep
    Sweatman, Denis Russell
    Rujijanagul, Gobwute
    FERROELECTRICS, 2022, 601 (01) : 9 - 23
  • [30] Doping effects of Li-Sb content on the structure and electrical properties of [(Na0.5K0.5)1 - x(Li)x(Sb)x(Nb)1 - xO3] lead-free piezoelectric ceramics
    Rani, Rashmi
    Sharma, Seema
    Rai, Radheshyam
    Kholkin, Andrei L.
    MATERIALS RESEARCH BULLETIN, 2012, 47 (02) : 381 - 386