Topics in Current Chemistry (2020) 378:6
1 3
4. Candeia RA, Bernardi MIB, Longo E, Santos IMG, Souza AG (2004) Synthesis and characterization of spinel pigment CaFe 2 O 4 obtained by the polymeric precursor method. Mater Lett
58:569–572
5. Candeia RA, Souza MAF, Bernardi MIB, Maestrelli SC, Santos IMG, Souza AG, Longo E (2007)
Monoferrite BaFe 2 O 4 applied as ceramic pigment. Ceram Int 33:521–525
6. Valenzuela R (2012) Novel applications of ferrites 2012:ID 591839
7. Pullar RC (2012) Hexagonal ferrites: a review of the synthesis, properties and applications of hexaferrite ceramics. Prog Mater Sci 57:1191–1334
8. Structure Type 063: BaFe 12 O 19 (magnetoplumbite). http://som.web.cmu.edu/struc tures /S063BaFe1 2O19.html (2019)
9. Taffa DH, Dillert R, Ulpe AC, Bauerfeind KCL, Bredow T, Bahnemann DW, Wark M (2009) Photoelectrochemical and theoretical investigations of spinel type ferrites (M x Fe 3–x O 4 ) for water splitting: a mini-review. J Photon Energy 7:1–25
10. Goodenough JB, Longo JM, Hellwege KH (1970) Crystallographic and magnetic properties of perovskite and perovskite-related compounds. Springer, Berlin
11. Dixon CAL, Kavanagh CM, Knight KS, Kockelmann W, Morrison FD, Lightfoot P (2015) Thermal evolution of the crystal structure of the orthorhombic perovskite LaFeO 3 . J Solid State Chem
230:337–342
12. Yuan SJ, Cao YM, Li L, Qi TF, Cao SX, Zhang JC, DeLong LE, Cao G (2013) First-order spin
reorientation transition and specific-heat anomaly in CeFeO 3 . J Appl Phys 114:113909
13. Kefeni KK, Mamba BB, Msagati TAM (2017) Application of spinel ferrite nanoparticles in water
and wastewater treatment: a review. Sep Purif Technol 188:399–422
14. Kefeni KK, Msagati TAM, Mamba BB (2017) Ferrite nanoparticles: synthesis, characterisation
and applications in electronic device. Mater Sci Eng B 215:37–55
15. Tatarchuk T, Bououdina M, Judith Vijaya J, John Kennedy L (2017) Spinel ferrite nanoparticles:
synthesis, crystal structure, properties, and perspective applications. In: Fesenko O, Yatsenko L
(eds) Nanophysics, Nanomaterials, Interface Studies, and Applications. NANO 2016. Springer
Proceedings in Physics, vol 195. Springer, Cham, pp 305–325
16. Masunga N, Mmelesi OK, Kefeni KK, Mamba BB (2019) Recent advances in copper ferrite nanoparticles and nanocomposites synthesis, magnetic properties and application in water treatment:
review. J Environ Chem Eng 7:103179
17. Dhand C, Dwivedi N, Loh XJ, Jie Ying AN, Verma NK, Beuerman RW, Lakshminarayanan R,
Ramakrishna S (2015) Methods and strategies for the synthesis of diverse nanoparticles and their
applications: a comprehensive overview. RSC Adv 5:105003–105037
18. Amiri S, Shokrollahi H (2013) Magnetic and structural properties of RE doped Co-ferrite (REåNd,
Eu, and Gd) nano-particles synthesized by co-precipitation. J Magn Magn Mater 345:18–23
19. Zi Z, Sun Y, Zhu X, Yang Z, Dai J, Song W (2009) Synthesis and magnetic properties of CoFe 2 O 4
ferrite nanoparticles. J Magn Magn Mater 321:1251–1255
20. Harzali H, Saida F, Marzouki A, Megriche A, Baillon F, Espitalier F, Mgaidi A (2016) Structural
and magnetic properties of nano-sized NiCuZn ferrites synthesized by co-precipitation method
with ultrasound irradiation. J Magn Magn Mater 419:50–56
21. Rashmi SK, Bhojya Naik HS, Jayadevappa H, Viswanath R, Patil SB, Madhukara Naik M (2017)
Solar light responsive Sm-Zn ferrite nanoparticle as efficient photocatalyst. Mater Sci Eng B
225:86–97
22. Vinosha PA, Das SJ (2018) Investigation on the role of pH for the structural, optical and magnetic
properties of cobalt ferrite nanoparticles and its effect on the photo-Fenton activity. Mater Today
Proc 5:8662–8671
23. Pereira C, Pereira AM, Fernandes C, Rocha M, Mendes R, Fernandez-Garcia MP, Guedes A,
Tavares PB, Greneche J, Araujo JP, Freire C (2012) Superparamagnetic MFe 2 O 4 (M = Fe Co, Mn)
nanoparticles: tuning the particle size and magnetic properties through a novel one-step coprecipitation route. Chem Mater 24:1496–1504
24. Tatarchuk T, Bououdina M, Vijaya J, John Kennedy L (2017) Spinel ferrite nanoparticles: synthesis, crystal structure, properties, and perspective applications, Chapter 22. In: Fesenko O, Yatsenko
L (eds) Nanophysics, nanomaterials, interface studies and applications, Springer Proceedings in
Physics, vol 195. Springer, Berlin
25. Sharma R, Bansal S, Singhal S (2015) Tailoring the photo-Fenton activity of spinel ferrites
(MFe 2 O 4 ) by incorporating different cations (M = Cu, Zn, Ni and Co) in the structure. RSC Adv
5:6006–6018
154
Reprinted from the journal
1 3
4. Candeia RA, Bernardi MIB, Longo E, Santos IMG, Souza AG (2004) Synthesis and characterization of spinel pigment CaFe 2 O 4 obtained by the polymeric precursor method. Mater Lett
58:569–572
5. Candeia RA, Souza MAF, Bernardi MIB, Maestrelli SC, Santos IMG, Souza AG, Longo E (2007)
Monoferrite BaFe 2 O 4 applied as ceramic pigment. Ceram Int 33:521–525
6. Valenzuela R (2012) Novel applications of ferrites 2012:ID 591839
7. Pullar RC (2012) Hexagonal ferrites: a review of the synthesis, properties and applications of hexaferrite ceramics. Prog Mater Sci 57:1191–1334
8. Structure Type 063: BaFe 12 O 19 (magnetoplumbite). http://som.web.cmu.edu/struc tures /S063BaFe1 2O19.html (2019)
9. Taffa DH, Dillert R, Ulpe AC, Bauerfeind KCL, Bredow T, Bahnemann DW, Wark M (2009) Photoelectrochemical and theoretical investigations of spinel type ferrites (M x Fe 3–x O 4 ) for water splitting: a mini-review. J Photon Energy 7:1–25
10. Goodenough JB, Longo JM, Hellwege KH (1970) Crystallographic and magnetic properties of perovskite and perovskite-related compounds. Springer, Berlin
11. Dixon CAL, Kavanagh CM, Knight KS, Kockelmann W, Morrison FD, Lightfoot P (2015) Thermal evolution of the crystal structure of the orthorhombic perovskite LaFeO 3 . J Solid State Chem
230:337–342
12. Yuan SJ, Cao YM, Li L, Qi TF, Cao SX, Zhang JC, DeLong LE, Cao G (2013) First-order spin
reorientation transition and specific-heat anomaly in CeFeO 3 . J Appl Phys 114:113909
13. Kefeni KK, Mamba BB, Msagati TAM (2017) Application of spinel ferrite nanoparticles in water
and wastewater treatment: a review. Sep Purif Technol 188:399–422
14. Kefeni KK, Msagati TAM, Mamba BB (2017) Ferrite nanoparticles: synthesis, characterisation
and applications in electronic device. Mater Sci Eng B 215:37–55
15. Tatarchuk T, Bououdina M, Judith Vijaya J, John Kennedy L (2017) Spinel ferrite nanoparticles:
synthesis, crystal structure, properties, and perspective applications. In: Fesenko O, Yatsenko L
(eds) Nanophysics, Nanomaterials, Interface Studies, and Applications. NANO 2016. Springer
Proceedings in Physics, vol 195. Springer, Cham, pp 305–325
16. Masunga N, Mmelesi OK, Kefeni KK, Mamba BB (2019) Recent advances in copper ferrite nanoparticles and nanocomposites synthesis, magnetic properties and application in water treatment:
review. J Environ Chem Eng 7:103179
17. Dhand C, Dwivedi N, Loh XJ, Jie Ying AN, Verma NK, Beuerman RW, Lakshminarayanan R,
Ramakrishna S (2015) Methods and strategies for the synthesis of diverse nanoparticles and their
applications: a comprehensive overview. RSC Adv 5:105003–105037
18. Amiri S, Shokrollahi H (2013) Magnetic and structural properties of RE doped Co-ferrite (REåNd,
Eu, and Gd) nano-particles synthesized by co-precipitation. J Magn Magn Mater 345:18–23
19. Zi Z, Sun Y, Zhu X, Yang Z, Dai J, Song W (2009) Synthesis and magnetic properties of CoFe 2 O 4
ferrite nanoparticles. J Magn Magn Mater 321:1251–1255
20. Harzali H, Saida F, Marzouki A, Megriche A, Baillon F, Espitalier F, Mgaidi A (2016) Structural
and magnetic properties of nano-sized NiCuZn ferrites synthesized by co-precipitation method
with ultrasound irradiation. J Magn Magn Mater 419:50–56
21. Rashmi SK, Bhojya Naik HS, Jayadevappa H, Viswanath R, Patil SB, Madhukara Naik M (2017)
Solar light responsive Sm-Zn ferrite nanoparticle as efficient photocatalyst. Mater Sci Eng B
225:86–97
22. Vinosha PA, Das SJ (2018) Investigation on the role of pH for the structural, optical and magnetic
properties of cobalt ferrite nanoparticles and its effect on the photo-Fenton activity. Mater Today
Proc 5:8662–8671
23. Pereira C, Pereira AM, Fernandes C, Rocha M, Mendes R, Fernandez-Garcia MP, Guedes A,
Tavares PB, Greneche J, Araujo JP, Freire C (2012) Superparamagnetic MFe 2 O 4 (M = Fe Co, Mn)
nanoparticles: tuning the particle size and magnetic properties through a novel one-step coprecipitation route. Chem Mater 24:1496–1504
24. Tatarchuk T, Bououdina M, Vijaya J, John Kennedy L (2017) Spinel ferrite nanoparticles: synthesis, crystal structure, properties, and perspective applications, Chapter 22. In: Fesenko O, Yatsenko
L (eds) Nanophysics, nanomaterials, interface studies and applications, Springer Proceedings in
Physics, vol 195. Springer, Berlin
25. Sharma R, Bansal S, Singhal S (2015) Tailoring the photo-Fenton activity of spinel ferrites
(MFe 2 O 4 ) by incorporating different cations (M = Cu, Zn, Ni and Co) in the structure. RSC Adv
5:6006–6018
154
Reprinted from the journal
