Topics in Current Chemistry (2020) 378:7
1 3
5. Zammit I, Vaiano V, Ribeiro AR, Silva AM, Manaia CM, Rizzo L (2019) Photocatalyst for the
degradation of antibiotics and the inactivation of antibiotic-resistant bacteria. Catalysts 9:222
6. Zhang H, Lv X, Li Y, Wang Y, Li J (2009) P25-graphene composite as a high performance photocatalyst. ACS Nano 4:380–386
7. Yang L, Liu B, Liu T, Ma X, Li H, Yin S, Sato T, Wang Y (2017) A P25/(NH 4 ) x WO 3 hybrid
photocatalyst with broad spectrum photocatalytic properties under UV, visible, and near-infrared
irradiation. Sci Rep 7:45715
8. Hashimoto K, Irie H, Fujishima A (2005) TiO 2 photocatalysis: a historical overview and future
prospects. Jpn J Appl Phys 44:8269–8285
9. Vaiano V, Iervolino G, Rizzo L (2018) Cu-doped ZnO as efficient photocatalyst for the oxidation of
arsenite to arsenate under visible light. Appl Catal B 238:471–479
10. Su H, Jing L, Shi K, Yao C, Fu H (2010) Synthesis of large surface area LaFeO 3 nanoparticles by
SBA-16 template method as high active visible photocatalysts. J Nanopart Res 12:967–974
11. Iervolino G, Vaiano V, Sannino D, Rizzo L, Ciambelli P (2016) Production of hydrogen from
glucose by LaFeO 3 based photocatalytic process during water treatment. Int J Hydrogen Energy
41:959–966
12. Li S, Jing L, Fu W, Yang L, Xin B, Fu H (2007) Photoinduced charge property of nanosized perovskite-type LaFeO 3 and its relationships with photocatalytic activity under visible irradiation.
Mater Res Bull 42:203–212
13. Huang L, Fu W, Fu X, Zong B, Liu H, Bala H et al (2017) Facile and large-scale preparation of N
doped TiO 2 photocatalyst with high visible light photocatalytic activity. Mater Lett 209:585–588
14. Lee D-K, Kim S-C, Cho I-C, Kim S-J, Kim S-W (2004) Photocatalytic oxidation of microcystinLR in a fluidized bed reactor having TiO 2 -coated activated carbon. Sep Purif Technol 34:59–66
15. Chong MN, Vimonses V, Lei S, Jin B, Chow C, Saint C (2009) Synthesis and characterisation
of novel titania impregnated kaolinite nano-photocatalyst. Microporous Mesoporous Mater
117:233–242
16. Argurio P, Fontananova E, Molinari R, Drioli E (2018) Photocatalytic membranes in photocatalytic membrane reactors. Processes 6:162–189
17. Zhu H, Gao X, Lan Y, Song D, Xi Y, Zhao J (2004) Hydrogen titanate nanofibers covered with
anatase nanocrystals: a delicate structure achieved by the wet chemistry reaction of the titanate
nanofibers. J Am Chem Soc 126:8380–8381
18. Hatat-Fraile M, Liang R, Arlos MJ, He RX, Peng P, Servos MR et al (2017) Concurrent photocatalytic and filtration processes using doped TiO 2 coated quartz fiber membranes in a photocatalytic
membrane reactor. Chem Eng J 330:531–540
19. Kwak S-Y, Kim SH, Kim SS (2001) Hybrid organic/inorganic reverse osmosis (RO) membrane for
bactericidal anti-fouling. 1. Preparation and characterization of TiO 2 nanoparticle self-assembled
aromatic polyamide thin-film-composite (TFC) membrane. Environ Sci Technol 35:2388–2394
20. Dzinun H, Othman MHD, Ismail AF, Puteh MH, Rahman MA, Jaafar J (2015) Photocatalytic degradation of nonylphenol by immobilized TiO 2 in dual layer hollow fibre membranes. Chem Eng J
269:255–261
21. Cantarella M, Sanz R, Buccheri MA, Ruffino F, Rappazzo G, Scalese S et al (2016) Immobilization of nanomaterials in PMMA composites for photocatalytic removal of dyes, phenols and bacteria from water. J Photochem Photobiol A 321:1–11
22. Chen C-Y, Wang M, Li J-Y, Pootrakulchote N, Alibabaei L, Ngoc-le C-h et al (2009) Highly
efficient light-harvesting ruthenium sensitizer for thin-film dyesensitized solar cells. ACS nano
3:3103–3109
23. Chen Z, Li F, Huang C (2007) Organic D-π-A dyes for dye-sensitized solar cell. Curr Org Chem
11:1241–1258
24. Ito S, Miura H, Uchida S, Takata M, Sumioka K, Liska P et al (2008) High-conversion-efficiency
organic dye-sensitized solar cells with a novel indoline dye. Chem Commun 44(41):5194–5196
25. Zhang Z, Wang W, Wang L, Sun S (2012) Enhancement of visible-light photocatalysis by coupling
with narrow-band-gap semiconductor: a case study on Bi 2 S 3 /Bi 2 WO 6 . ACS Appl Mater Interfaces
4:593–597
26. Vaiano V, Iervolino G, Sannino D (2016) Photocatalytic Removal of Tartrazine Dye from Aqueous
Samples on LaFeO 3 /ZnO Photocatalysts. Chem Eng Trans 52:847–852
27. Abe R, Sayama K, Arakawa H (2002) Efficient hydrogen evolution from aqueous mixture of I
− and
acetonitrile using a merocyanine dye-sensitized Pt/TiO 2 photocatalyst under visible light irradiation. Chem Phys Lett 362:441–444
256
Reprinted from the journal
1 3
5. Zammit I, Vaiano V, Ribeiro AR, Silva AM, Manaia CM, Rizzo L (2019) Photocatalyst for the
degradation of antibiotics and the inactivation of antibiotic-resistant bacteria. Catalysts 9:222
6. Zhang H, Lv X, Li Y, Wang Y, Li J (2009) P25-graphene composite as a high performance photocatalyst. ACS Nano 4:380–386
7. Yang L, Liu B, Liu T, Ma X, Li H, Yin S, Sato T, Wang Y (2017) A P25/(NH 4 ) x WO 3 hybrid
photocatalyst with broad spectrum photocatalytic properties under UV, visible, and near-infrared
irradiation. Sci Rep 7:45715
8. Hashimoto K, Irie H, Fujishima A (2005) TiO 2 photocatalysis: a historical overview and future
prospects. Jpn J Appl Phys 44:8269–8285
9. Vaiano V, Iervolino G, Rizzo L (2018) Cu-doped ZnO as efficient photocatalyst for the oxidation of
arsenite to arsenate under visible light. Appl Catal B 238:471–479
10. Su H, Jing L, Shi K, Yao C, Fu H (2010) Synthesis of large surface area LaFeO 3 nanoparticles by
SBA-16 template method as high active visible photocatalysts. J Nanopart Res 12:967–974
11. Iervolino G, Vaiano V, Sannino D, Rizzo L, Ciambelli P (2016) Production of hydrogen from
glucose by LaFeO 3 based photocatalytic process during water treatment. Int J Hydrogen Energy
41:959–966
12. Li S, Jing L, Fu W, Yang L, Xin B, Fu H (2007) Photoinduced charge property of nanosized perovskite-type LaFeO 3 and its relationships with photocatalytic activity under visible irradiation.
Mater Res Bull 42:203–212
13. Huang L, Fu W, Fu X, Zong B, Liu H, Bala H et al (2017) Facile and large-scale preparation of N
doped TiO 2 photocatalyst with high visible light photocatalytic activity. Mater Lett 209:585–588
14. Lee D-K, Kim S-C, Cho I-C, Kim S-J, Kim S-W (2004) Photocatalytic oxidation of microcystinLR in a fluidized bed reactor having TiO 2 -coated activated carbon. Sep Purif Technol 34:59–66
15. Chong MN, Vimonses V, Lei S, Jin B, Chow C, Saint C (2009) Synthesis and characterisation
of novel titania impregnated kaolinite nano-photocatalyst. Microporous Mesoporous Mater
117:233–242
16. Argurio P, Fontananova E, Molinari R, Drioli E (2018) Photocatalytic membranes in photocatalytic membrane reactors. Processes 6:162–189
17. Zhu H, Gao X, Lan Y, Song D, Xi Y, Zhao J (2004) Hydrogen titanate nanofibers covered with
anatase nanocrystals: a delicate structure achieved by the wet chemistry reaction of the titanate
nanofibers. J Am Chem Soc 126:8380–8381
18. Hatat-Fraile M, Liang R, Arlos MJ, He RX, Peng P, Servos MR et al (2017) Concurrent photocatalytic and filtration processes using doped TiO 2 coated quartz fiber membranes in a photocatalytic
membrane reactor. Chem Eng J 330:531–540
19. Kwak S-Y, Kim SH, Kim SS (2001) Hybrid organic/inorganic reverse osmosis (RO) membrane for
bactericidal anti-fouling. 1. Preparation and characterization of TiO 2 nanoparticle self-assembled
aromatic polyamide thin-film-composite (TFC) membrane. Environ Sci Technol 35:2388–2394
20. Dzinun H, Othman MHD, Ismail AF, Puteh MH, Rahman MA, Jaafar J (2015) Photocatalytic degradation of nonylphenol by immobilized TiO 2 in dual layer hollow fibre membranes. Chem Eng J
269:255–261
21. Cantarella M, Sanz R, Buccheri MA, Ruffino F, Rappazzo G, Scalese S et al (2016) Immobilization of nanomaterials in PMMA composites for photocatalytic removal of dyes, phenols and bacteria from water. J Photochem Photobiol A 321:1–11
22. Chen C-Y, Wang M, Li J-Y, Pootrakulchote N, Alibabaei L, Ngoc-le C-h et al (2009) Highly
efficient light-harvesting ruthenium sensitizer for thin-film dyesensitized solar cells. ACS nano
3:3103–3109
23. Chen Z, Li F, Huang C (2007) Organic D-π-A dyes for dye-sensitized solar cell. Curr Org Chem
11:1241–1258
24. Ito S, Miura H, Uchida S, Takata M, Sumioka K, Liska P et al (2008) High-conversion-efficiency
organic dye-sensitized solar cells with a novel indoline dye. Chem Commun 44(41):5194–5196
25. Zhang Z, Wang W, Wang L, Sun S (2012) Enhancement of visible-light photocatalysis by coupling
with narrow-band-gap semiconductor: a case study on Bi 2 S 3 /Bi 2 WO 6 . ACS Appl Mater Interfaces
4:593–597
26. Vaiano V, Iervolino G, Sannino D (2016) Photocatalytic Removal of Tartrazine Dye from Aqueous
Samples on LaFeO 3 /ZnO Photocatalysts. Chem Eng Trans 52:847–852
27. Abe R, Sayama K, Arakawa H (2002) Efficient hydrogen evolution from aqueous mixture of I
− and
acetonitrile using a merocyanine dye-sensitized Pt/TiO 2 photocatalyst under visible light irradiation. Chem Phys Lett 362:441–444
256
Reprinted from the journal
