Magnetite (Fe3O4) nano particles have been synthesized via sol-gel auto-combustion method using citric acid as a fuel. Post preparation thermal treatment was done at: 220 °C, 270 °C and, 320 °C for 1 hour, to insure the formation of single phase Fe3O4 nano particles. X-Ray diffraction (XRD) results confirm the formation of Magnetite (Fe3O4), and also the presence of Hematite (α-Fe2O3) as secondary phase. Results reveal that with increasing annealing temperature lattice parameter (a), specific surface area (S), hopping lengths (LA, LB) for tetrahedral (A) and octahedral site (B) increases, whereas x-ray density (ρXRD) and, Scherer’s grain diameter (Ds) varies respectively range between 5286.2−5376.1 kg/m3, 37.2−43.5 nm. Study of Fe3O4 nano particles is of value, due to its prospective applications in medical science - treating metastatic cancer by injecting into the cells.
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29 August 2019
ADVANCES IN BASIC SCIENCE (ICABS 2019)
7–9 February 2019
Bahal, India
Research Article|
August 29 2019
Sol-gel auto-combustion synthesis of magnetite and its characterization via x-ray diffraction Available to Purchase
C. Parmar;
C. Parmar
1
Magnetic Materials Laboratory, School of Physics, D. A. University
, Khandwa road, Indore – 452001, India
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R. Verma;
R. Verma
1
Magnetic Materials Laboratory, School of Physics, D. A. University
, Khandwa road, Indore – 452001, India
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Arindam Ghosh;
Arindam Ghosh
2
Department of Physics, GDC Memorial College
, Bahal (Bhiwani), Haryana, India
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S. S. Modak;
S. S. Modak
3
Physics Department, Jaypee Univercity of Engineering and Technology
, Raghogarh, Guna – 473226, India
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S. N. Kane
S. N. Kane
a)
1
Magnetic Materials Laboratory, School of Physics, D. A. University
, Khandwa road, Indore – 452001, India
a)Corresponding author: [email protected]
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C. Parmar
1
R. Verma
1
Arindam Ghosh
2
S. S. Modak
3
S. N. Kane
1,a)
1
Magnetic Materials Laboratory, School of Physics, D. A. University
, Khandwa road, Indore – 452001, India
2
Department of Physics, GDC Memorial College
, Bahal (Bhiwani), Haryana, India
3
Physics Department, Jaypee Univercity of Engineering and Technology
, Raghogarh, Guna – 473226, India
a)Corresponding author: [email protected]
AIP Conf. Proc. 2142, 160014 (2019)
Citation
C. Parmar, R. Verma, Arindam Ghosh, S. S. Modak, S. N. Kane; Sol-gel auto-combustion synthesis of magnetite and its characterization via x-ray diffraction. AIP Conf. Proc. 29 August 2019; 2142 (1): 160014. https://doi.org/10.1063/1.5122595
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