Exploring the structural, elastic, optical, dielectric and magnetic characteristics of Ca2+ incorporated superparamagnetic Zn0.5-xCa0.1Co0.4+xFe2O4 (x=0.0, 0.05 & 0.1) nanoferrites

被引:32
|
作者
Lal, Ganesh [1 ]
Punia, Khushboo [1 ]
Bhoi, Himani [1 ]
Dolia, Satya Narain [2 ]
Choudhary, Banwari L. [3 ]
Alvi, Parvez A. [3 ]
Dalela, Saurabh [4 ]
Barbar, Shiv K. [5 ]
Kumar, Sudhish [1 ]
机构
[1] Mohanlal Sukhadia Univ, Dept Phys, Magnetism Lab, Udaipur 313002, Rajasthan, India
[2] Univ Rajasthan, Dept Phys, Jaipur 302004, Rajasthan, India
[3] Banasthali Vidyapith, Dept Phys, Sch Phys Sci, Vanasthali 304022, Rajasthan, India
[4] Univ Kota, Dept Pure & Appl Phys, Kota 324005, India
[5] Jai Narain Vyas Univ, Dept Phys, Mat Sci Lab, Jodhpur 342011, Rajasthan, India
关键词
Nanoferrites; Elastic constants; Band-gap energy; Magnetization; Superparamagnetism; Ferrimagnetism; Blocking temperature; Dielectric parameters; IRRADIATION-INDUCED MODIFICATIONS; AG+15 ION IRRADIATION; CO; BEHAVIOR; SUBSTITUTION; FERRITES; MG; NI; NANOPARTICLES; MORPHOLOGY;
D O I
10.1016/j.jallcom.2021.161190
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 work is aimed to understand influence of 10% Ca doping on the structural, optical, dielectric and magnetic behavior of half doped Zinc-Cobalt nanoferrites. Zn0.5-xCa0.1Co0.4+xFe2O4 (x = 0.0, 0.05 & 0.1) nanoferrites with crystallite size in 10-13 nm range were synthesized through a sol-gel auto-incinerated route. Rietveld profile refinement of PXRD patterns, observation of spinel ferrite type fcc Laue rings in SAED patterns, Raman modes (A(1g),T-2g & E-g) and metal-oxide (upsilon(1) & upsilon(2)) bonds in 400-600 cm(-1) IR range illustrated formation of single phase mixed valent spinel type fcc nanoferrites. In these nanoferrites Zn2+ ion resides at tetrahedral (T-A) site, while Co2+ & Ca2+ ions preferentially fill the octahedral OB site and Fe3+ ion occupy both T-A & OB sites. Moderate optical absorbance in blue color region and strong absorbance in the lower UV region is observed in these nanoferrites, which is owing to presence of mixed valent ions at the OB and T-A sites respectively. 10% Ca doping in these half doped Zn-Co nanoferrites led to considerable decrement in the band gap energy (E-g) and turning them to semiconducting state (E-g in 2.5-2.3 eV range). In these nanoferrites hopping of electrons between divalent Fe2+, Ca2+, Zn2+, Co2+ & trivalent Fe3+ & Co3+ cations led to systematic decrease in the dielectric parameters with frequency. These nanoferrites exhibited super-paramagnetism with a high magnetic moment (similar to 2.9-3.0 mu B/f.u.) at room temperature. Systematic en-hancements in saturation magnetization (M-s), coercivity (H-c), remanence (M-r) and squareness ratio at low temperatures revealed changing of superparamagnetic character to soft ferrimagnetic state of these na-noferrites. At 20K, highest value of M-s = 119 emu/g was observed for Zn0.5Ca0.1Co0.4Fe2O4 nanoferrite, while highest H-c = 2911 Oe & M-r = 61.0 emu/g were recorded for Zn0.4Ca0.1Co0.5Fe2O4 nanoferrite. Thus, a moderate 10% Ca2+ ion incorporation in Zn0.5-xCa0.1Co0.4+xFe2O4 (x = 0.0, 0.05 & 0.1) nanoferrites is emerged as an effective route for obtaining superparamagnetic nanoferrites with high magnetic moment and reduced band gap energy. Unique magneto-optical characteristics of Zn0.5-xCa0.1Co0.4+xFe2O4 (x = 0.0, 0.05 & 0.1) nanoferrites would project them as a good material for opto-magnetic, drug carrier, biomedical contrast agent and magnetic storage applications. (C) 2021 Elsevier B.V. All rights reserved.
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页数:20
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