Topics in Current Chemistry (2020) 378:6
1 3
Table 2
(continued)
Catalyst
Method of synthesis
Pollutant
Conversion
Advantages
Disadvantages
References
Co
0.5 Zn
0.25 M
0.25 Fe
2 O
4 –TiO
2
Co-precipitation,
hydrolysis and thermal treatment
Methyl orange and
methylene blue
BaFe
1–x Cu x
O
3–δ
Pechini method
Atrazine
90% degradation
(120 min)
Best activity at pH 11;
higher surface area
and more oxygen
vacancy
Jamil et al. [38]
MFe
2 O
4 (M = Fe, Mn,
Co)
Chemical co-precipitation
Azo dyes
Citric acid functionalization improves
the photocatalytic
activity
Pereira et al. [23]
124
Reprinted from the journal
1 3
Table 2
(continued)
Catalyst
Method of synthesis
Pollutant
Conversion
Advantages
Disadvantages
References
Co
0.5 Zn
0.25 M
0.25 Fe
2 O
4 –TiO
2
Co-precipitation,
hydrolysis and thermal treatment
Methyl orange and
methylene blue
BaFe
1–x Cu x
O
3–δ
Pechini method
Atrazine
90% degradation
(120 min)
Best activity at pH 11;
higher surface area
and more oxygen
vacancy
Jamil et al. [38]
MFe
2 O
4 (M = Fe, Mn,
Co)
Chemical co-precipitation
Azo dyes
Citric acid functionalization improves
the photocatalytic
activity
Pereira et al. [23]
124
Reprinted from the journal
