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.

1.
J.
Xu
,
H.
Yang
,
W.
Fu
,
K.
Du
,
Y.
Sui
,
J.
Chen
,
Y.
Zeng
,
M.
Li
and
G.
Zou
,
J. Magn. Magn. Mater.
309
,
307
311
(
2007
).
2.
A.
Jafari
,
S. Farijami
Shayesteh
,
M.
Salouti
and
K.
Boustani
,
J. Magn. Magn. Mater.
379
,
305
312
(
2015
).
3.
H.
Zeng
,
J.
Li
,
J. P.
Liu
,
Z. L.
Wang
and
S.
Sun
,
Nature
420
,
395
398
(
2002
).
4.
C. T.
Black
,
C. B.
Murray
,
R. L.
Sandstorm
and
S.
Sun
,
Science
290
,
1131
(
2000
).
5.
Atarashi
,
T. Imai
and
J.
Shimoiizaka
,
J, Magn. Magn. Mater.
85
,
3
(
1990
).
6.
K.
Raj
,
B.
Moskowitz
and
R.
Casciari
,
J. Magn. Magn. Mater.
149
,
174
(
1995
).
7.
L. X.
Tiefenauer
,
A.
Tschirky
,
G.
Kühne
and
R. Y.
Andres
,
Magn. Reson. Imaging
14
,
391
(
1996
).
8.
D. M.
Huang
,
D. B.
Cao
,
Y. W.
Li
and
H. J.
Jiao
,
J. Phys. Chem. B
110
,
13920
(
2006
).
9.
J. M.
Nam
,
C. S.
Thaxton
and
C. A.
Mirkin
,
Science
30
,
1884
(
2003
).
10.
R. K.
Gilchrist
,
R.
Medal
,
W.D.
Shorey
,
R.C
Hanselman
,
J. C.
Parrot
and
C.B.
Taylor
,
Ann. Surg.
146
,
596
606
(
1957
).
11.
K.
Indira
and
P. K.
Lakshmi
,
Int. J. Pharm. Sci. Nanotech.
3
,
1035
42
(
2010
).
12.
R.
Ianoᶊ
,
A.
Tăculescu
,
C.
Păcurariu
and
I.
Lăzau
,
J. Am. Ceram. Soc.
95
,
1
5
(
2012
).
13.
Y.
Wei
,
B.
Han
,
X.
Hu
,
Y.
Lin
,
X.
Wang
and
X.
Deng
,
Procedia Eng.
27
,
632
(
2012
).
14.
S.
Sheker
,
S.
Zafarian
,
CH. S.
Chakra
and
K. V.
Rao
,
Int. J. Inn. Res. Sci. Eng. Technol.
2
(
2013
).
15.
C. Y.
Haw
,
F.
Mohamed
,
C. H.
Chia
,
S.
Radiman
,
S.
Zakaria
,
N. M.
Huang
and
H. N.
Lim
,
Ceram. Int.
36
,
1417
(
2010
).
16.
S.
Asuha
,
B.
Suyala
,
X.
Siqintana
, and
S.
Zhao
,
J. Alloys Compd.
509
,
2870
2873
(
2011
).
17.
X.
Liu
,
Y.
Guo
,
Y.
Wang
,
J.
Ren
,
Y.
Wang
,
Y.
Guo
,
Y.
Guo
,
G.
Lu
,
Y.
Wang
, and
Z.
Zhang
,
J. Mater. Sci.
45
,
906
10
(
2010
).
18.
Z.
Hua
,
Y.
Deng
,
K.
Li
and
S.
Yang
,
Nanoscale Res. Lett.
7
,
129
(
2012
).
19.
G. B.
Biddlecombe
,
Y. K.
Gun’ko
,
J. M.
Kelly
,
S. C.
Pillai
,
J. M. D.
Coey
,
M.
Venkatesan
and
A. P.
Douvalis
,
Material Chemistry
11
,
2937
2939
(
2001
).
20.
M. Z.
Ansar
,
S.
Atiq
,
K.
Alamgir
and
S.
Nadeem
,
J. Sci. Res.
6
,
399
406
(
2014
).
21.
M.
Satalkar
,
S. N.
Kane
,
A.
Ghosh
,
N.
Ghodke
,
G.
Barrera
,
F.
Calegato
,
M.
Coisson
,
P.
Tiberto
,
F.
Vinai
,
J. Alloys Comp.
615
,
S313
S316
(
2014
).
22.
J.
Smit
,
H. P. J.
Wijn
,
Ferrites
(
Philips Technical Library
),
Eindhoven
, (
1959
).
23.
S.
Raghuvanshi
,
M.
Satalkar
,
P.
Tapkir
,
N.
Ghodke
and
S. N.
Kane
,
J. Phys. Conf. Ser.
534
,
012031–1
5
(
2014
).
24.
R.
Verma
,
S. N.
Kane
,
S.
Raghuvanshi
,
M.
Satalkar
,
S. S.
Modak
and
F.
Mazaleyrat
,
AIP Conf. Proc.
1953
,
030135-1
030135-4
(
2018
).
25.
Ch. V.
Reddy
,
C.
Byon
,
B.
Narendra
,
D.
Baskar
,
G.
Srinivas
,
J.
Shim
and
S. V. Prabhakar
Vattikuti
,
Superlattices Microstruct
82
,
165
173
(
2015
).
26.
Tatarchuk
,
M.
Bououdina
,
W.
Macyk
,
O.
Shyichuk
,
N.
Paliychuk
,
I.
Yaremiy
,
B.
Al-Najar
and
M.
Pacia
,
Nanoscale Res. Lett.
12
,
141
11
(
2017
).
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