23 Ni Addition Induced Changes in Structural, Magnetic, and Cationic. . .
373
11. Ammar S, Jouini N, Fiévet F et al (2004) Influence of the synthesis parameters on the cationic
distribution of ZnFe 2 O 4 nanoparticles obtained by forced hydrolysis in polyol medium. J NonCryst Solids 345:658–662
12. Willard MA, Nakamura Y, Laughlin DE et al (1999) Magnetic properties of ordered and
disordered spinel-phase ferrimagnets. J Am Ceram Soc 82:3342–3346
13. Smit J, Wijn HPJ (1959) Ferrites. Philips’ Technical Library, Eindhoven-Netherlands,
pp 148–149, 157
14. Chikazumi S (1997) Physics of ferromagnetism. Oxford University Press, Oxford, pp 502–504
15. Roy PK, Bera J (2006) Effect of Mg substitution on electromagnetic properties of
(Ni 0.25 Cu 0.20 Zn 0.55 ) Fe 2 O 4 ferrite prepared by auto combustion method. J Magn Magn Mater
298:38–42
16. Sujatha C, Reddy KV, Babu KS et al (2013) Effect of Mg substitution on electromagnetic
properties of NiCuZn ferrite. J Magn Magn Mater 340:38–45
17. Akther Hossain AKM, Biswas TS, Yanagida T et al (2010) Investigation of structural and
magnetic properties of polycrystalline Ni 0.50 Zn 0.50−x Mg x Fe 2 O 4 spinel ferrites. Mater Chem
Phys 120:461–467
18. Varalaxmi N, Reddy NR, Ramana MV et al (2008) Stress sensitivity of inductance in
NiMgCuZn ferrites and development of a stress insensitive ferrite composition for micro
inductors. J Mater Sci Mater Electron 19:399–405
19. Dar MA, Verma V, Gairola SP et al (2012) Low dielectric loss of Mg doped Ni–Cu–Zn nanoferrites for power applications. Appl Surf Sci 258:5342–5347
20. Sujatha C, Reddy KV, Babu KS et al (2012) Structural and magnetic properties of Mg
substituted NiCuZn nano ferrites. Physica B 407:1232–1237
21. Sujatha C, Reddy KV, Babu KS et al (2013) Effect of co substitution of Mg and Zn on
electromagnetic properties of NiCuZn ferrites. J Phys Chem Solids 74:917–923
22. Satalkar M, Kane SN, Ghosh A et al (2014) Synthesis and soft magnetic properties of
Zn 0.8-x Ni x Mg 0.1 Cu 0.1 Fe 2 O 4 (x = 0.0–0.8) ferrites prepared by sol-gel auto-combustion
method. J Alloys Compd 615:S313–S316
23. Kane SN, Satalkar M (2017) Correlation between magnetic properties and cationic distribution
of Zn 0.85-x Ni x Mg 0.05 Cu 0.1 Fe 2 O 4 nano spinel ferrite: effect of Ni doping. J Mater Sci 52:3467–
3477
24. Satalkar M, Kane SN, Kumaresavanji M et al (2017) On the role of cationic distribution in
determining magnetic properties of Zn 0.7-x Ni x Mg 0.2 Cu 0.1 Fe 2 O 4 nano ferrite. Mater Res Bull
91:14–21. https://doi.org/10.1016/j.materresbull.2017.03.021
25. Rana MU, Misbah-ul-Islam, Abbas T (2003) Magnetic interactions in Cu-substituted manganese ferrites. Solid State Commun 126:129–133
26. Topkaya R, Baykal A, Demir A (2013) Yafet–Kittel-type magnetic order in Zn-substituted
cobalt ferrite nanoparticles with uniaxial anisotropy. J Nanopart Res 15:1359–1376
27. Bamzai KK, Kour G, Kaur B et al (2014) Preparation, and structural and magnetic properties
of Ca substituted magnesium ferrite with composition MgCa x Fe 2−x O4 (x = 0.00, 0.01, 0.03,
0.05, 0.07). J Mater 2014:1–8
28. Mazen SA, Abu-Elsaad NI (2006) Structural and some magnetic properties of manganesesubstituted lithium ferrites. J Magn Magn Mater 298:38–42
29. Gadkari AB, Shinde TJ, Vasambekar PN (2010) Magnetic properties of rare earth ion (Sm 3+ )
added nanocrystalline Mg–Cd ferrites, prepared by oxalate co-precipitation method. J Magn
Magn Mater 322:3823–3827
30. Jadhav SA (2001) Magnetic properties of Zn-substituted Li–Cu ferrites. J Magn Magn Mater
224:167–172
31. Kapse VD, Ghosh SA, Raghuwanshi FC et al (2009) Nanocrystalline spinel Ni 0.6 Zn 0.4 Fe 2 O 4 :
A novel material for H 2 S sensing. Mater Chem Phys 113:638–644
32. Lutterotti L, Scardi P (1990) Simultaneous structure and size-strain refinement by the Rietveld
method. J Appl Crystallogr 23:246–252
33. Qi X, Zhou J, Yue Z et al (2003) Permeability and microstructure of manganese modified
lithium ferrite prepared by sol–gel auto-combustion method. Mater Sci Eng B 99:278–281
373
11. Ammar S, Jouini N, Fiévet F et al (2004) Influence of the synthesis parameters on the cationic
distribution of ZnFe 2 O 4 nanoparticles obtained by forced hydrolysis in polyol medium. J NonCryst Solids 345:658–662
12. Willard MA, Nakamura Y, Laughlin DE et al (1999) Magnetic properties of ordered and
disordered spinel-phase ferrimagnets. J Am Ceram Soc 82:3342–3346
13. Smit J, Wijn HPJ (1959) Ferrites. Philips’ Technical Library, Eindhoven-Netherlands,
pp 148–149, 157
14. Chikazumi S (1997) Physics of ferromagnetism. Oxford University Press, Oxford, pp 502–504
15. Roy PK, Bera J (2006) Effect of Mg substitution on electromagnetic properties of
(Ni 0.25 Cu 0.20 Zn 0.55 ) Fe 2 O 4 ferrite prepared by auto combustion method. J Magn Magn Mater
298:38–42
16. Sujatha C, Reddy KV, Babu KS et al (2013) Effect of Mg substitution on electromagnetic
properties of NiCuZn ferrite. J Magn Magn Mater 340:38–45
17. Akther Hossain AKM, Biswas TS, Yanagida T et al (2010) Investigation of structural and
magnetic properties of polycrystalline Ni 0.50 Zn 0.50−x Mg x Fe 2 O 4 spinel ferrites. Mater Chem
Phys 120:461–467
18. Varalaxmi N, Reddy NR, Ramana MV et al (2008) Stress sensitivity of inductance in
NiMgCuZn ferrites and development of a stress insensitive ferrite composition for micro
inductors. J Mater Sci Mater Electron 19:399–405
19. Dar MA, Verma V, Gairola SP et al (2012) Low dielectric loss of Mg doped Ni–Cu–Zn nanoferrites for power applications. Appl Surf Sci 258:5342–5347
20. Sujatha C, Reddy KV, Babu KS et al (2012) Structural and magnetic properties of Mg
substituted NiCuZn nano ferrites. Physica B 407:1232–1237
21. Sujatha C, Reddy KV, Babu KS et al (2013) Effect of co substitution of Mg and Zn on
electromagnetic properties of NiCuZn ferrites. J Phys Chem Solids 74:917–923
22. Satalkar M, Kane SN, Ghosh A et al (2014) Synthesis and soft magnetic properties of
Zn 0.8-x Ni x Mg 0.1 Cu 0.1 Fe 2 O 4 (x = 0.0–0.8) ferrites prepared by sol-gel auto-combustion
method. J Alloys Compd 615:S313–S316
23. Kane SN, Satalkar M (2017) Correlation between magnetic properties and cationic distribution
of Zn 0.85-x Ni x Mg 0.05 Cu 0.1 Fe 2 O 4 nano spinel ferrite: effect of Ni doping. J Mater Sci 52:3467–
3477
24. Satalkar M, Kane SN, Kumaresavanji M et al (2017) On the role of cationic distribution in
determining magnetic properties of Zn 0.7-x Ni x Mg 0.2 Cu 0.1 Fe 2 O 4 nano ferrite. Mater Res Bull
91:14–21. https://doi.org/10.1016/j.materresbull.2017.03.021
25. Rana MU, Misbah-ul-Islam, Abbas T (2003) Magnetic interactions in Cu-substituted manganese ferrites. Solid State Commun 126:129–133
26. Topkaya R, Baykal A, Demir A (2013) Yafet–Kittel-type magnetic order in Zn-substituted
cobalt ferrite nanoparticles with uniaxial anisotropy. J Nanopart Res 15:1359–1376
27. Bamzai KK, Kour G, Kaur B et al (2014) Preparation, and structural and magnetic properties
of Ca substituted magnesium ferrite with composition MgCa x Fe 2−x O4 (x = 0.00, 0.01, 0.03,
0.05, 0.07). J Mater 2014:1–8
28. Mazen SA, Abu-Elsaad NI (2006) Structural and some magnetic properties of manganesesubstituted lithium ferrites. J Magn Magn Mater 298:38–42
29. Gadkari AB, Shinde TJ, Vasambekar PN (2010) Magnetic properties of rare earth ion (Sm 3+ )
added nanocrystalline Mg–Cd ferrites, prepared by oxalate co-precipitation method. J Magn
Magn Mater 322:3823–3827
30. Jadhav SA (2001) Magnetic properties of Zn-substituted Li–Cu ferrites. J Magn Magn Mater
224:167–172
31. Kapse VD, Ghosh SA, Raghuwanshi FC et al (2009) Nanocrystalline spinel Ni 0.6 Zn 0.4 Fe 2 O 4 :
A novel material for H 2 S sensing. Mater Chem Phys 113:638–644
32. Lutterotti L, Scardi P (1990) Simultaneous structure and size-strain refinement by the Rietveld
method. J Appl Crystallogr 23:246–252
33. Qi X, Zhou J, Yue Z et al (2003) Permeability and microstructure of manganese modified
lithium ferrite prepared by sol–gel auto-combustion method. Mater Sci Eng B 99:278–281
