Structural, optical, and magnetic properties of NiO/NiFe2O4 nanocomposites

被引:0
|
作者
B. Sahu
U. K. Panigrahi
Sujay Chakravarty
Shamima Hussain
P. Mallick
机构
[1] Maharaja Sriram Chandra Bhanja Deo University,Department of Physics
[2] UGC-DAE Consortium for Scientific Research,undefined
[3] Kalpakkam Node,undefined
来源
Applied Physics A | 2023年 / 129卷
关键词
Nanocomposite; Ferromagnetism; Exchange bias; Luminescence;
D O I
暂无
中图分类号
学科分类号
摘要
We report the synthesis of NiO/NiFe2O4 nanocomposites following the thermal annealing-assisted simple wet chemical route. XRD and Raman characterizations confirm the existence of both NiO and NiFe2O4 in forming the composite samples. The 2 M Raman mode of NiO in the composite sample is decreased with increasing the annealing temperature from 500 to 600 °C, indicating the suppression of antiferromagnetic (AFM) correlations which could be due to the disorder induced by defects and the presence of distinct NiFe2O4 phase. Morphological features signify the thermal annealing-induced shape transformation along with the reduction in grain agglomeration. Optical characterization indicated that the decrease of Urbach energy upon increasing annealing temperature ascribed to the decrease of structural disorder in the sample. Photoluminescence study revealed the shift of the color emission from near blue to green region with increasing annealing temperature from 500 to 600 °C. The presence of hysteresis with the perseverance of unsaturation nature indicated the occurrence of weak ferromagnetism in the AFM background of NiO matrix. The magnetic analysis employing modified Bloch’s function further supports the nanocomposite system. The persistence of exchange bias field, saturation magnetization, and anisotropy constant at 300 K in both the samples could be an indication for the usefulness of these materials for realizing the thermal stable magnetic device.
引用
收藏
相关论文
共 50 条
  • [41] Structural and magnetic properties of coprecipitated and ball milled nanocrystalline NiFe2O4
    Chinnasamy, N
    Narayanasamy, A
    Jeyadevan, B
    Shinoda, K
    Tohji, K
    Kasuya, A
    Sumiyama, K
    PROCEEDINGS OF THE INTERNATIONAL SYMPOSIUM ON CLUSTER ASSEMBLED MATERIALS, 2001, 3 : 109 - 112
  • [42] Preparation and magnetic properties of NiFe2O4 nanocrystallites
    Fang, Daolai
    Zheng, Cuihong
    Zhu, Weichang
    Jin, Chuangui
    Cailiao Yanjiu Xuebao/Chinese Journal of Materials Research, 2000, 14 (02): : 159 - 162
  • [43] Fabrication and magnetic properties of NiFe2O4 nanorods
    Yue Wu
    Changhong Shi
    Wei Yang
    Rare Metals, 2010, 29 : 385 - 389
  • [44] Fabrication and magnetic properties of NiFe2O4 nanorods
    WU Yuea
    RareMetals, 2010, 29 (04) : 385 - 389
  • [45] Fabrication and magnetic properties of NiFe2O4 nanorods
    Wu Yue
    Shi Changhong
    Yang Wei
    RARE METALS, 2010, 29 (04) : 385 - 389
  • [46] Optical and Magnetic Properties of Co2+ Substituted NiFe2O4 Nanoparticles
    Joshi, Seema
    Kumar, Manoj
    Srivastava, Geetika
    DAE SOLID STATE PHYSICS SYMPOSIUM 2015, 2016, 1731
  • [47] Synthesis, characterization and electrical properties of Li2NiFe2O4/NiFe2O4 nanocomposites
    S. Balamurugan
    S. Manimekalai
    I. Prakash
    Journal of Materials Science: Materials in Electronics, 2017, 28 : 18610 - 18619
  • [48] Synthesis and identification of structural, optical, electrical, magnetic, photocatalytic, and electrochemical properties of novel Au/MoS2@ (NiFe2O4)x nanocomposites
    Gholipur, Reza
    Taha, Nameer Abdolwahhab
    Afrouzeh, Khatereh
    SENSORS AND ACTUATORS A-PHYSICAL, 2023, 362
  • [49] Synthesis, characterization and electrical properties of Li2NiFe2O4/NiFe2O4 nanocomposites
    Balamurugan, S.
    Manimekalai, S.
    Prakash, I.
    JOURNAL OF MATERIALS SCIENCE-MATERIALS IN ELECTRONICS, 2017, 28 (24) : 18610 - 18619
  • [50] Effect of NiFe2O4 contents on the structural, optical and electrical properties of PEO/CMC-NiFe2O4 nanocomposite
    Gaabour, L. H.
    Alghamdi, S. K.
    DIGEST JOURNAL OF NANOMATERIALS AND BIOSTRUCTURES, 2023, 18 (04) : 1599 - 1611