Topics in Current Chemistry (2020) 378:6
1 3
48. Manova E, Kunev B, Paneva D, Mitov I, Petrov L, Estournès C, D’Orléan C, Rehspringer J, Kurmoo M (2004) Mechano-synthesis, characterization, and magnetic properties of nanoparticles of
cobalt ferrite, CoFe 2 O 4 . Chem Mater 16:5689–5696
49. Yan Z, Gao J, Li Y, Zhang M, Guo M (2015) Hydrothermal synthesis and structure evolution of
metal-doped magnesium ferrite from saprolite laterite. RSC Adv 5:92778–92787
50. Thomson WT (2011) Uhlig’s corrosion handbook. Wiley, Hoboken
51. Hemmi Y, Ichikawa N, Saito N, Masuda T (1994) Electrochemical considerations regarding general corrosion of materials in a BWR primary circuit. J Nucl Sci Technol 31:1202–1213
52. Ramankutty CG, Sugunan S (2001) Surface properties and catalytic activity of ferrospinels of
nickel, cobalt and copper, prepared by soft chemical methods. Appl Catal A 218:39–51
53. Reddy GK, Gunasekara K, Boolchand P, Smirniotis PG (2011) Cr- and Ce-doped ferrite catalysts
for the high temperature water–gas shift reaction: TPR and Mossbauer spectroscopic study. J Phys
Chem C 115:920–930
54. Šimša Z, Široký P, Koláček J, Brabers VAM (1980) Optical and magneto-optical properties of
magnetite and manganese ferrites. J Magn Magn Mater 15–18:775–776
55. Balaji S, Kalai Selvan R, John Berchmans L, Angappan S, Subramanian K, Augustin CO (2005)
Combustion synthesis and characterization of Sn
4+ substituted nanocrystalline NiFe 2 O 4 . Mater Sci
Eng B 119:119–124
56. Harish KN, Bhojya Naik HS, Prashanth Kumar PN, Viswanath R (2012) Synthesis, enhanced optical and photocatalytic study of Cd–Zn ferrites under sunlight. Catal Sci Technol 2:1033–1039
57. Archer MD, Morris GC, Yim GK (1981) Electrochemical approaches to solar energy conversion:
a brief overview and preliminary results obtained with n-type cobalt ferrite. J Electroanal Chem
Interfacial Electrochem 118:89–100
58. Antonious MS, Etman M, Guyot M, Merceron T (1986) Photoelectrochemical characteristics of p- and n- type polycrystalline Ni-ferrite electrodes in aqueous solutions. Mater Res Bull
21:1515–1523
59. Vinodgopal K, Kamat PV (1995) Enhanced rates of photocatalytic degradation of an azo dye using
SnO 2 /TiO 2 coupled semiconductor thin films. Environ Sci Technol 29:841–845
60. Ranjit KT, Viswanathan B (1997) Synthesis, characterization and photocatalytic properties of irondoped TiO 2 catalysts. J Photochem Photobiol A 108:79–84
61. Bard AJ (1979) Photoelectrochemistry and heterogeneous photo-catalysis at semiconductors. J
Photochem 10:59–75
62. Low J, Yu J, Jaroniec M, Wageh S, Al-Ghamdi A (2017) Heterojunction photocatalysts. Adv Mater
29:1601694
63. Jang JS, Kim HG, Lee JS (2012) Heterojunction semiconductors: a strategy to develop efficient
photocatalytic materials for visible light water splitting. Catal Today 185:270–277
64. Jang JS, Choi SH, Kim HG, Lee JS (2008) Location and state of Pt in platinized CdS/TiO 2 photocatalysts for hydrogen production from water under visible light. J Phys Chem C 112:17200–17205
65. Jang JS, Yoon KY, Xiao X, Fan FF, Bard AJ (2009) Development of a potential Fe 2 O 3 -based photocatalyst thin film for water oxidation by scanning electrochemical microscopy: effects of Ag–
Fe 2 O 3 nanocomposite and Sn doping. Chem Mater 21:4803–4810
66. Tu Y, You C, Chang C, Wang S, Chan T (2013) Adsorption behavior of As(III) onto a copper ferrite generated from printed circuit board industry. Chem Eng J 225:433–439
67. Tu Y, You C, Chang C, Wang S, Chan T (2012) Arsenate adsorption from water using a novel fabricated copper ferrite. Chem Eng J 198–199:440–448
68. Tu Y, You C (2014) Phosphorus adsorption onto green synthesized nano-bimetal ferrites: equilibrium, kinetic and thermodynamic investigation. Chem Eng J 251:285–292
69. Rehman MA, Yusoff I, Alias Y (2015) Fluoride adsorption by doped and un-doped magnetic ferrites CuCe x Fe 2–x O 4 : preparation, characterization, optimization and modeling for effectual remediation technologies. J Hazard Mater 299:316–324
70. Sun W, Pan W, Wang F, Xu N (2015) Removal of Se(IV) and Se(VI) by MFe 2 O 4 nanoparticles
from aqueous solution. Chem Eng J 273:353–362
71. Duan S, Tang R, Xue Z, Zhang X, Zhao Y, Zhang W, Zhang J, Wang B, Zeng S, Sun D (2015)
Effective removal of Pb(II) using magnetic Co 0.6 Fe 2.4 O 4 micro-particles as the adsorbent: synthesis and study on the kinetic and thermodynamic behaviors for its adsorption. Colloids Surf A
469:211–223
156
Reprinted from the journal
1 3
48. Manova E, Kunev B, Paneva D, Mitov I, Petrov L, Estournès C, D’Orléan C, Rehspringer J, Kurmoo M (2004) Mechano-synthesis, characterization, and magnetic properties of nanoparticles of
cobalt ferrite, CoFe 2 O 4 . Chem Mater 16:5689–5696
49. Yan Z, Gao J, Li Y, Zhang M, Guo M (2015) Hydrothermal synthesis and structure evolution of
metal-doped magnesium ferrite from saprolite laterite. RSC Adv 5:92778–92787
50. Thomson WT (2011) Uhlig’s corrosion handbook. Wiley, Hoboken
51. Hemmi Y, Ichikawa N, Saito N, Masuda T (1994) Electrochemical considerations regarding general corrosion of materials in a BWR primary circuit. J Nucl Sci Technol 31:1202–1213
52. Ramankutty CG, Sugunan S (2001) Surface properties and catalytic activity of ferrospinels of
nickel, cobalt and copper, prepared by soft chemical methods. Appl Catal A 218:39–51
53. Reddy GK, Gunasekara K, Boolchand P, Smirniotis PG (2011) Cr- and Ce-doped ferrite catalysts
for the high temperature water–gas shift reaction: TPR and Mossbauer spectroscopic study. J Phys
Chem C 115:920–930
54. Šimša Z, Široký P, Koláček J, Brabers VAM (1980) Optical and magneto-optical properties of
magnetite and manganese ferrites. J Magn Magn Mater 15–18:775–776
55. Balaji S, Kalai Selvan R, John Berchmans L, Angappan S, Subramanian K, Augustin CO (2005)
Combustion synthesis and characterization of Sn
4+ substituted nanocrystalline NiFe 2 O 4 . Mater Sci
Eng B 119:119–124
56. Harish KN, Bhojya Naik HS, Prashanth Kumar PN, Viswanath R (2012) Synthesis, enhanced optical and photocatalytic study of Cd–Zn ferrites under sunlight. Catal Sci Technol 2:1033–1039
57. Archer MD, Morris GC, Yim GK (1981) Electrochemical approaches to solar energy conversion:
a brief overview and preliminary results obtained with n-type cobalt ferrite. J Electroanal Chem
Interfacial Electrochem 118:89–100
58. Antonious MS, Etman M, Guyot M, Merceron T (1986) Photoelectrochemical characteristics of p- and n- type polycrystalline Ni-ferrite electrodes in aqueous solutions. Mater Res Bull
21:1515–1523
59. Vinodgopal K, Kamat PV (1995) Enhanced rates of photocatalytic degradation of an azo dye using
SnO 2 /TiO 2 coupled semiconductor thin films. Environ Sci Technol 29:841–845
60. Ranjit KT, Viswanathan B (1997) Synthesis, characterization and photocatalytic properties of irondoped TiO 2 catalysts. J Photochem Photobiol A 108:79–84
61. Bard AJ (1979) Photoelectrochemistry and heterogeneous photo-catalysis at semiconductors. J
Photochem 10:59–75
62. Low J, Yu J, Jaroniec M, Wageh S, Al-Ghamdi A (2017) Heterojunction photocatalysts. Adv Mater
29:1601694
63. Jang JS, Kim HG, Lee JS (2012) Heterojunction semiconductors: a strategy to develop efficient
photocatalytic materials for visible light water splitting. Catal Today 185:270–277
64. Jang JS, Choi SH, Kim HG, Lee JS (2008) Location and state of Pt in platinized CdS/TiO 2 photocatalysts for hydrogen production from water under visible light. J Phys Chem C 112:17200–17205
65. Jang JS, Yoon KY, Xiao X, Fan FF, Bard AJ (2009) Development of a potential Fe 2 O 3 -based photocatalyst thin film for water oxidation by scanning electrochemical microscopy: effects of Ag–
Fe 2 O 3 nanocomposite and Sn doping. Chem Mater 21:4803–4810
66. Tu Y, You C, Chang C, Wang S, Chan T (2013) Adsorption behavior of As(III) onto a copper ferrite generated from printed circuit board industry. Chem Eng J 225:433–439
67. Tu Y, You C, Chang C, Wang S, Chan T (2012) Arsenate adsorption from water using a novel fabricated copper ferrite. Chem Eng J 198–199:440–448
68. Tu Y, You C (2014) Phosphorus adsorption onto green synthesized nano-bimetal ferrites: equilibrium, kinetic and thermodynamic investigation. Chem Eng J 251:285–292
69. Rehman MA, Yusoff I, Alias Y (2015) Fluoride adsorption by doped and un-doped magnetic ferrites CuCe x Fe 2–x O 4 : preparation, characterization, optimization and modeling for effectual remediation technologies. J Hazard Mater 299:316–324
70. Sun W, Pan W, Wang F, Xu N (2015) Removal of Se(IV) and Se(VI) by MFe 2 O 4 nanoparticles
from aqueous solution. Chem Eng J 273:353–362
71. Duan S, Tang R, Xue Z, Zhang X, Zhao Y, Zhang W, Zhang J, Wang B, Zeng S, Sun D (2015)
Effective removal of Pb(II) using magnetic Co 0.6 Fe 2.4 O 4 micro-particles as the adsorbent: synthesis and study on the kinetic and thermodynamic behaviors for its adsorption. Colloids Surf A
469:211–223
156
Reprinted from the journal
