374
M. Satalkar et al.
34. Mohammed KA, Al-Rawas AD, Gismelseed AM et al (2012) Infrared and structural studies of
Mg 1–x Zn x Fe 2 O 4 ferrites. Physica B 407:795–804
35. Alone ST, Shirsath SE, Kadam RH et al (2011) Chemical synthesis, structural and magnetic
properties of nano-structured Co–Zn–Fe–Cr ferrite. J Alloys Compd 509:5055–5060
36. Vegard L (1921) The constitution of mixed crystals and the space occupied by atoms. Z Phys
5:17–26
37. Sharma R, Thakur P, Sharma P et al (2017) Ferrimagnetic Ni 2+ doped Mg-Zn spinel ferrite
nanoparticles for high density information storage. J Alloys Compd 704:7–17
38. Weil L, Bertaut EF, Bochirol L (1950) Propriétés magnétiques et structure de la phase
quadratique du ferrite de cuivre. J Phys Radium 11:208–212
39. Eloska E, Wolski W (1992) The evidence of Cd x
2+ Fe 1-x
3+ [Ni 2+ 1-x Fe 3+ 1+x ]O 4 cation
distribution based on X-ray and mossbauer data. Phys Status Solidi (A) 132:K51–K56
40. Cervinka L, Simsa Z (1970) Distribution of copper ions in some copper-manganese ferrites. J
Phys B (Czechoslovakia) 20:470–474
41. Tanna AR, Joshi HH (2013) Computer aided X-ray diffraction intensity analysis for spinels:
hands-on computing experience. World Acad Sci Eng Technol 75:334–341
42. Pandit AA, More SS, Dorik RG et al (2003) Structural and magnetic properties of
Co 1+y Sn y Fe 2–2y–x Cr x O 4 ferrite system. Bull Mater Sci 26:517–521
43. Al-Hilli MF, Li S, Kassim KS (2012) Structural analysis, magnetic and electrical properties of
samarium substituted lithium–nickel mixed ferrites. J Magn Magn Mater 324:873–879
44. Alimuddin MH, Shirsath SE, Meena SS et al (2013) Investigation of structural, dielectric,
magnetic and antibacterial activity of Cu–Cd–Ni–FeO 4 nanoparticles. J Magn Magn Mater
341:148–157
45. Hashim M, Meena SS, Kotnala RK et al (2014) Exploring the structural, Mössbauer and
dielectric properties of Co 2+ incorporated Mg 0.5 Zn 0.5-x Co x Fe 2 O 4 nanocrystalline ferrite. J
Magn Magn Mater 360:21–33
46. Mustafa G, Islam MU, Zhang W et al (2015) Influence of the divalent and trivalent ions
substitution on the structural and magnetic properties of Mg 0.5-x Cd x Co 0.5 Cr 0.04 Tb y Fe 1.96-y O 4
ferrites prepared by sol–gel method. J Magn Magn Mater 387:147–154
47. Mohamed MB, Wahba AM, Heiba ZK (2015) Effect of Zn substitution on structural, magnetic,
and electric properties of Ni 1−x Zn x Fe 1.78 Al 0.2 Gd 0.02 O 4 nanoparticles. J Supercond Nov Magn
28:3675–3683
48. Sathishkumar G, Venkataraju C, Sivakumar K (2013) Magnetic and dielectric properties of
cadmium substituted nickel cobalt nanoferrites. J Mater Sci Mater Electron 24:1057–1062
49. Najmoddin N, Beitollahi A, Kavas H et al (2014) XRD cation distribution and magnetic
properties of mesoporous Zn-substituted CuFe 2 O 4 . Ceram Int 40:3619–3625
50. Jadhav J, Biswas S, Yadav AK et al (2017) Structural and magnetic properties of nanocrystalline Ni-Zn ferrites: in the context of cationic distribution. J Alloys Compd 696:28–41
51. Kurmude DV, Barkule RS, Raut AV et al (2014) X-ray diffraction and cation distribution
studies in zinc-substituted nickel ferrite nanoparticles. J Supercond Nov Magn 27:547–553
52. Tholkappiyan R, Vishista K (2015) Combustion synthesis of Mg–Er ferrite nanoparticles:
cation distribution and structural, optical, and magnetic properties. Mater Sci Semicond
Process 40:631–642
53. Sutka A, Mezinskis G (2012) Sol–gel auto-combustion synthesis of spinel-type ferrite nanomaterials. Front Mater Sci 6:128–141
54. Sun Y, Ji G, Zheng M et al (2010) Synthesis and magnetic properties of crystalline mesoporous
CoFe 2 O 4 with large specific surface area. J Mater Chem 20:945–952
55. Rikukawa H (1982) Relationship between microstructures and magnetic properties of ferrites
containing closed pores. IEEE Trans Magn 18:1535–1537
56. Gao Z, Cui F, Zeng S et al (2010) A high surface area superparamagnetic mesoporous spinel
ferrite synthesized by a template-free approach and its adsorptive property. Microporous
Mesoporous Mater 132:188–195
M. Satalkar et al.
34. Mohammed KA, Al-Rawas AD, Gismelseed AM et al (2012) Infrared and structural studies of
Mg 1–x Zn x Fe 2 O 4 ferrites. Physica B 407:795–804
35. Alone ST, Shirsath SE, Kadam RH et al (2011) Chemical synthesis, structural and magnetic
properties of nano-structured Co–Zn–Fe–Cr ferrite. J Alloys Compd 509:5055–5060
36. Vegard L (1921) The constitution of mixed crystals and the space occupied by atoms. Z Phys
5:17–26
37. Sharma R, Thakur P, Sharma P et al (2017) Ferrimagnetic Ni 2+ doped Mg-Zn spinel ferrite
nanoparticles for high density information storage. J Alloys Compd 704:7–17
38. Weil L, Bertaut EF, Bochirol L (1950) Propriétés magnétiques et structure de la phase
quadratique du ferrite de cuivre. J Phys Radium 11:208–212
39. Eloska E, Wolski W (1992) The evidence of Cd x
2+ Fe 1-x
3+ [Ni 2+ 1-x Fe 3+ 1+x ]O 4 cation
distribution based on X-ray and mossbauer data. Phys Status Solidi (A) 132:K51–K56
40. Cervinka L, Simsa Z (1970) Distribution of copper ions in some copper-manganese ferrites. J
Phys B (Czechoslovakia) 20:470–474
41. Tanna AR, Joshi HH (2013) Computer aided X-ray diffraction intensity analysis for spinels:
hands-on computing experience. World Acad Sci Eng Technol 75:334–341
42. Pandit AA, More SS, Dorik RG et al (2003) Structural and magnetic properties of
Co 1+y Sn y Fe 2–2y–x Cr x O 4 ferrite system. Bull Mater Sci 26:517–521
43. Al-Hilli MF, Li S, Kassim KS (2012) Structural analysis, magnetic and electrical properties of
samarium substituted lithium–nickel mixed ferrites. J Magn Magn Mater 324:873–879
44. Alimuddin MH, Shirsath SE, Meena SS et al (2013) Investigation of structural, dielectric,
magnetic and antibacterial activity of Cu–Cd–Ni–FeO 4 nanoparticles. J Magn Magn Mater
341:148–157
45. Hashim M, Meena SS, Kotnala RK et al (2014) Exploring the structural, Mössbauer and
dielectric properties of Co 2+ incorporated Mg 0.5 Zn 0.5-x Co x Fe 2 O 4 nanocrystalline ferrite. J
Magn Magn Mater 360:21–33
46. Mustafa G, Islam MU, Zhang W et al (2015) Influence of the divalent and trivalent ions
substitution on the structural and magnetic properties of Mg 0.5-x Cd x Co 0.5 Cr 0.04 Tb y Fe 1.96-y O 4
ferrites prepared by sol–gel method. J Magn Magn Mater 387:147–154
47. Mohamed MB, Wahba AM, Heiba ZK (2015) Effect of Zn substitution on structural, magnetic,
and electric properties of Ni 1−x Zn x Fe 1.78 Al 0.2 Gd 0.02 O 4 nanoparticles. J Supercond Nov Magn
28:3675–3683
48. Sathishkumar G, Venkataraju C, Sivakumar K (2013) Magnetic and dielectric properties of
cadmium substituted nickel cobalt nanoferrites. J Mater Sci Mater Electron 24:1057–1062
49. Najmoddin N, Beitollahi A, Kavas H et al (2014) XRD cation distribution and magnetic
properties of mesoporous Zn-substituted CuFe 2 O 4 . Ceram Int 40:3619–3625
50. Jadhav J, Biswas S, Yadav AK et al (2017) Structural and magnetic properties of nanocrystalline Ni-Zn ferrites: in the context of cationic distribution. J Alloys Compd 696:28–41
51. Kurmude DV, Barkule RS, Raut AV et al (2014) X-ray diffraction and cation distribution
studies in zinc-substituted nickel ferrite nanoparticles. J Supercond Nov Magn 27:547–553
52. Tholkappiyan R, Vishista K (2015) Combustion synthesis of Mg–Er ferrite nanoparticles:
cation distribution and structural, optical, and magnetic properties. Mater Sci Semicond
Process 40:631–642
53. Sutka A, Mezinskis G (2012) Sol–gel auto-combustion synthesis of spinel-type ferrite nanomaterials. Front Mater Sci 6:128–141
54. Sun Y, Ji G, Zheng M et al (2010) Synthesis and magnetic properties of crystalline mesoporous
CoFe 2 O 4 with large specific surface area. J Mater Chem 20:945–952
55. Rikukawa H (1982) Relationship between microstructures and magnetic properties of ferrites
containing closed pores. IEEE Trans Magn 18:1535–1537
56. Gao Z, Cui F, Zeng S et al (2010) A high surface area superparamagnetic mesoporous spinel
ferrite synthesized by a template-free approach and its adsorptive property. Microporous
Mesoporous Mater 132:188–195
