378
T. A. Khalyavka et al.
References
1. Stroyuk OL, Ermokhina NI, Korzhak GV, Andryushina NS, Shvalagin VV, Kozytskiy AV,
Manoryk PA, Barakov RYu, Kuchmiy SYa, Shcherbatyuk MS, Sapsay VI, Puziy AM
(2017) Photocatalytic and photoelectrochemical properties of hierarchical mesoporous TiO 2
microspheres produced using a crown template J Photochem Photobiol A Chem 334:26–35
2. Sahoo C, Gupta AK (2012) Optimization of photocatalytic degradation of methylene blue using
silver ion doped titanium dioxide by combination of experimental design and response surface
approach. J Hazard Mater 215–216:302–310
3. Sun J, Liu N, Zhai S, Xiao Z, An Q, Huang D (2014) Gold-Titania/protonated zeolite nanocomposite photocatalysts for methyl orange degradation under ultraviolet and visible irradiation.
Mater Sci Semicond Proces 25:286–293
4. Bondarenko MV, Khalyavka TA, Shcherban ND, Tsyba NN (2017) Mesoporous nanocomposites based on titanium dioxide and carbon as perspective photocatalysts for water purification.
Nanosist Nanomater Nanotehn 15(1):99–112
5. Azam MU, Tahir M, Umer M, Jaffar MM, Nawawi MGM (2019) Engineering approach
to enhance photocatalytic water splitting for dynamic H 2 production using La 2 O 3 /TiO 2
nanocatalyst in a monolith photoreactor. Appl Surf Sci 484:1089–1101
6. Linnik O, Chorna N, Smirnova N (2017) Nonporous iron titanate thin films doped with nitrogen:
optical, structural and photocatalytic properties. Nanosci Res Lett 12:249–258
7. Gaponenko NV, Kortov VS, Smirnova NP, Orekhovskaya TI, Nikolaenko IA, Pustovarov VA,
Zvonarev SV, Slesarev AI, Linnik OP, Zhukovskii MA, Borisenko VE (2012) Sol-gel derived
structures for optical design and photocatalytic application. Microelectr Eng 90:131–137
8. Ohtani B, Kominami H, Bowman RM, Colombo DP, Jr, Noguchi H, Uosaki K (1998)
Femtosecond diffuse reflectance spectroscopy of aqueous titanium(IV) oxide suspension:
correlation of electron-hole recombination kinetics with photocatalytic activity. Chem Lett
27:579–580
9. Mogal SI, Mishra M, Gandhi VG, Tayade RJ (2013) Metal doped titanium dioxide: synthesis
and effect of metal ions on physico-chemical and photocatalytic properties. Mater Sci Forum
734:364–378
10. Niu P (2013) Photocatalytic degradation of methyl orange in aqueous TiO 2 suspensions. Asian
J Chem 25:1103–1106
11. Milenova K, Zaharieva K, Stambolova I, Blaskov V, Eliyas A, Dimitrov L (2017) Photocatalytic
performance of TiO 2 , CeO 2 , ZnO and TiO 2 -CeO 2 -ZnO in the course of methyl orange dye
degradation. J Chem Tech Met. 52:13–19
12. Baeissa ES (2016) Environmental remediation of aqueous methyl orange dye solution via
photocatalytic oxidation using AgGdFeO 3 nanoparticles. J Alloy Com 678:267–272
13. Jing LQ, Sun XJ, Xin BF, Wang BQ, Cai WM, Fu HG (2004) The preparation and characterization of La doped TiO 2 nanoparticles and their photocatalytic activity. J Solid State Chem
177:3375–3382
14. Nguyen-Phan T-D, Song MB, Kim EJ, Shin EW (2009) The role of rare earth metals in
lanthanide-incorporated mesoporous titania. Micropor Mesopor Mater 119:290–298
15. Priyanka KP, Revathy VR, Rosmin P, Thrivedu B, Elsa KM, Nimmymol J, Balakrishna
KM, Varghese T (2016) Influence of La doping on structural and optical properties of TiO 2
nanocrystals. Mater Charact 113:144–151
16. Meksi M, Berhault G, Guillard C, Kochkar H (2015) Design of TiO 2 nanorods and nanotubes
doped with lanthanum and comparative kinetic study in the photodegradation of formic acid.
Catal Commun 61:107–111
17. Rajagopal S, Nataraj D, Khyzhun OYu, Djaoued Y, Robichaud J, Senthil K, Mangalaraj D
(2011) Systematic synthesis and analysis of change in morphology, electronic structure and
photoluminescence properties of pyrazine intercalated MoO 3 hybrid nanostructures. Cryst Eng
Comm 13:2358–2368
18. Henrich VE, Cox PA (1994) The surface science of metal oxides. Cambridge University Press,
Cambridge
T. A. Khalyavka et al.
References
1. Stroyuk OL, Ermokhina NI, Korzhak GV, Andryushina NS, Shvalagin VV, Kozytskiy AV,
Manoryk PA, Barakov RYu, Kuchmiy SYa, Shcherbatyuk MS, Sapsay VI, Puziy AM
(2017) Photocatalytic and photoelectrochemical properties of hierarchical mesoporous TiO 2
microspheres produced using a crown template J Photochem Photobiol A Chem 334:26–35
2. Sahoo C, Gupta AK (2012) Optimization of photocatalytic degradation of methylene blue using
silver ion doped titanium dioxide by combination of experimental design and response surface
approach. J Hazard Mater 215–216:302–310
3. Sun J, Liu N, Zhai S, Xiao Z, An Q, Huang D (2014) Gold-Titania/protonated zeolite nanocomposite photocatalysts for methyl orange degradation under ultraviolet and visible irradiation.
Mater Sci Semicond Proces 25:286–293
4. Bondarenko MV, Khalyavka TA, Shcherban ND, Tsyba NN (2017) Mesoporous nanocomposites based on titanium dioxide and carbon as perspective photocatalysts for water purification.
Nanosist Nanomater Nanotehn 15(1):99–112
5. Azam MU, Tahir M, Umer M, Jaffar MM, Nawawi MGM (2019) Engineering approach
to enhance photocatalytic water splitting for dynamic H 2 production using La 2 O 3 /TiO 2
nanocatalyst in a monolith photoreactor. Appl Surf Sci 484:1089–1101
6. Linnik O, Chorna N, Smirnova N (2017) Nonporous iron titanate thin films doped with nitrogen:
optical, structural and photocatalytic properties. Nanosci Res Lett 12:249–258
7. Gaponenko NV, Kortov VS, Smirnova NP, Orekhovskaya TI, Nikolaenko IA, Pustovarov VA,
Zvonarev SV, Slesarev AI, Linnik OP, Zhukovskii MA, Borisenko VE (2012) Sol-gel derived
structures for optical design and photocatalytic application. Microelectr Eng 90:131–137
8. Ohtani B, Kominami H, Bowman RM, Colombo DP, Jr, Noguchi H, Uosaki K (1998)
Femtosecond diffuse reflectance spectroscopy of aqueous titanium(IV) oxide suspension:
correlation of electron-hole recombination kinetics with photocatalytic activity. Chem Lett
27:579–580
9. Mogal SI, Mishra M, Gandhi VG, Tayade RJ (2013) Metal doped titanium dioxide: synthesis
and effect of metal ions on physico-chemical and photocatalytic properties. Mater Sci Forum
734:364–378
10. Niu P (2013) Photocatalytic degradation of methyl orange in aqueous TiO 2 suspensions. Asian
J Chem 25:1103–1106
11. Milenova K, Zaharieva K, Stambolova I, Blaskov V, Eliyas A, Dimitrov L (2017) Photocatalytic
performance of TiO 2 , CeO 2 , ZnO and TiO 2 -CeO 2 -ZnO in the course of methyl orange dye
degradation. J Chem Tech Met. 52:13–19
12. Baeissa ES (2016) Environmental remediation of aqueous methyl orange dye solution via
photocatalytic oxidation using AgGdFeO 3 nanoparticles. J Alloy Com 678:267–272
13. Jing LQ, Sun XJ, Xin BF, Wang BQ, Cai WM, Fu HG (2004) The preparation and characterization of La doped TiO 2 nanoparticles and their photocatalytic activity. J Solid State Chem
177:3375–3382
14. Nguyen-Phan T-D, Song MB, Kim EJ, Shin EW (2009) The role of rare earth metals in
lanthanide-incorporated mesoporous titania. Micropor Mesopor Mater 119:290–298
15. Priyanka KP, Revathy VR, Rosmin P, Thrivedu B, Elsa KM, Nimmymol J, Balakrishna
KM, Varghese T (2016) Influence of La doping on structural and optical properties of TiO 2
nanocrystals. Mater Charact 113:144–151
16. Meksi M, Berhault G, Guillard C, Kochkar H (2015) Design of TiO 2 nanorods and nanotubes
doped with lanthanum and comparative kinetic study in the photodegradation of formic acid.
Catal Commun 61:107–111
17. Rajagopal S, Nataraj D, Khyzhun OYu, Djaoued Y, Robichaud J, Senthil K, Mangalaraj D
(2011) Systematic synthesis and analysis of change in morphology, electronic structure and
photoluminescence properties of pyrazine intercalated MoO 3 hybrid nanostructures. Cryst Eng
Comm 13:2358–2368
18. Henrich VE, Cox PA (1994) The surface science of metal oxides. Cambridge University Press,
Cambridge
