Liu F, Xie Y, Yu C, Liu X, Dai Y, Liu L, Ling Y (2015a) Novel hybrid Sr-doped TiO 2 /magnetic
Ni 0.6 Zn 0.4 Fe 2 O 4 for enhanced separation and photodegradation of organics under visible light.
RSC Adv 48:24056–24063
Liu E, Fan J, Hu X, Hu Y, Li H, Tang C, Sun L, Wan J (2015b) A facile strategy to fabricate
plasmonic Au/TiO 2 nano-grass films with overlapping visible light-harvesting structures for H 2
production from water. J Mater Sci 50:2298–2305
Liu Y, He X, Fu Y, Dionysiou DD (2016) Degradation kinetics and mechanism of oxytetracycline
by hydroxyl radical-based advanced oxidation processes. Chem Eng J 284:1317–1327
Logar M, Jancar B, Sturm S, Suvorov D (2010) Weak Polyion multilayer-assisted in situ synthesis
as a route toward a Plasmonic Ag/TiO 2 Photocatalyst. Langmuir 26:12215–12224
Lou Y, Chen J (2014) Recent developments in one dimensional (1D) nanostructured TiO 2 for
photoelectrochemical water splitting. Nanosci Nanotechnol Lett 6:361–371
Luis AM, Neves MC, Mendonc MH, Monteiro OC (2011) Influence of calcination parameters on
the TiO 2 photocatalytic properties. Mater Chem Phys 125:20–25
Macwan DP, Dave PN, Chaturvedi S (2011) A review on nano-TiO 2 sol-gel type syntheses and its
applications. J Mater Sci 46:3669–3686
Madhavan J, Grieser F, Ashokkumar M (2010) Combined advanced oxidation processes for the
synergistic degradation of ibuprofen in aqueous environments. J Hazard Mater 178:202–208
Maeda K, Domen K (2010) Photocatalytic water splitting: recent Progress and future challenges. J
Phys Chem Lett 1:2655–2661
Maeda K, Hagashi M, Lu D, Abe R, Domen K (2010) Efficient nonsacrificial water splitting
through two-step photoexcitation by visible light using a modified oxynitride as a hydrogen
evolution photocatalyst. J Am Chem Soc 132:5858–5868
Maegli AE, Pokrant S, Hisatomi T, Trottmann M, Domen K, Weidenkaff A (2014) Enhancement of
photocatalytic water oxidation by the morphological control of LaTiO2N and cobalt oxide
catalysts. J Phys Chem C 118:16344–16351
Mai FD, Lee WLW, Chang JL, Liu SC, Wu CW, Chen CC (2010) Fabrication of porous TiO2 film
on Ti foil by hydrothermal process and its photocatalytic efficiency and mechanisms with ethyl
violet dye. J Hazard Mater 177:864–875
Maicu M, Hidalgo MC, Colón G, Ja N (2011) Comparative study of the Photodeposition of Pt, au
and Pd on pre-sulphated TiO 2 for the photocatalytic decomposition of phenol. J Photochem
Photob A Chem 217:275–283
Maruthamani D, Divakar D, Kumaravel M (2015) Enhanced photocatalytic activity of TiO 2 by
reduced graphene oxide in mineralization of Rhodamine B dye. J Ind Eng Chem 30:33–43
Messih MFA, Ahmed MA, Syhed ASE (2013) Photocatalytic decolorization of Rhodamine B dye
using novel mesoporous SnO 2 -TiO 2 nano mixed oxides prepared by sol-gel method. J
Photochem Photobiol A 260:1–8
Miao H, Hu X, Fan J, Li C, Sun Q, Hao Y, Zhang G, Bai J, Hou X (2015) Hydrothermal synthesis of
TiO 2 nanostructure films and their photoelectrochemical properties. Appl Surf Sci 358:418–424
Michael I, Achilleos D, Lambropoulou V, Osorio Torrens S, Pérez M, Petrovic D, Barceló D, FattaKassinos D (2014) Proposed transformation pathway and evolution profile of diclofenac and
ibuprofen transformation products during (sono)photocatalysis. Appl Catal B Environ
147:1015–1027
Micó MM, Chourdaki S, Bacardit J, Sans C (2010) Comparison between ozonation and
photofenton processes for pesticide methomyl removal in advanced greenhouses. Ozone Sci
Eng 32:259–264
Minggu LJ, Daud WW, Kassim MB (2010) An overview of photocells and photoreactors for
photoelectrochemical water splitting. Int J Hydrog Energy 3:5233–5244
Miwa T, Kaneco S, Katsumata H, Suzuki T, Ohta K, Verma SC (2010) Photocatalytic hydrogen
production from aqueous methanol solution with CuO/Al 2 O 3 /TiO 2 nanocomposite. Int J
Hydrog Energy 35:6554–6560
Mohammadi MR, Fray DJ, Mohammadi A (2008) Sol-gel nanostructured titanium dioxide: controlling the crystal structure, crystallite size, phase transformation, packing and ordering.
Microporous Mesoporous Mater 112:392–402
7 Titanium Oxide-Based Nanomaterials with Photocatalytic Applications. . .
257
Ni 0.6 Zn 0.4 Fe 2 O 4 for enhanced separation and photodegradation of organics under visible light.
RSC Adv 48:24056–24063
Liu E, Fan J, Hu X, Hu Y, Li H, Tang C, Sun L, Wan J (2015b) A facile strategy to fabricate
plasmonic Au/TiO 2 nano-grass films with overlapping visible light-harvesting structures for H 2
production from water. J Mater Sci 50:2298–2305
Liu Y, He X, Fu Y, Dionysiou DD (2016) Degradation kinetics and mechanism of oxytetracycline
by hydroxyl radical-based advanced oxidation processes. Chem Eng J 284:1317–1327
Logar M, Jancar B, Sturm S, Suvorov D (2010) Weak Polyion multilayer-assisted in situ synthesis
as a route toward a Plasmonic Ag/TiO 2 Photocatalyst. Langmuir 26:12215–12224
Lou Y, Chen J (2014) Recent developments in one dimensional (1D) nanostructured TiO 2 for
photoelectrochemical water splitting. Nanosci Nanotechnol Lett 6:361–371
Luis AM, Neves MC, Mendonc MH, Monteiro OC (2011) Influence of calcination parameters on
the TiO 2 photocatalytic properties. Mater Chem Phys 125:20–25
Macwan DP, Dave PN, Chaturvedi S (2011) A review on nano-TiO 2 sol-gel type syntheses and its
applications. J Mater Sci 46:3669–3686
Madhavan J, Grieser F, Ashokkumar M (2010) Combined advanced oxidation processes for the
synergistic degradation of ibuprofen in aqueous environments. J Hazard Mater 178:202–208
Maeda K, Domen K (2010) Photocatalytic water splitting: recent Progress and future challenges. J
Phys Chem Lett 1:2655–2661
Maeda K, Hagashi M, Lu D, Abe R, Domen K (2010) Efficient nonsacrificial water splitting
through two-step photoexcitation by visible light using a modified oxynitride as a hydrogen
evolution photocatalyst. J Am Chem Soc 132:5858–5868
Maegli AE, Pokrant S, Hisatomi T, Trottmann M, Domen K, Weidenkaff A (2014) Enhancement of
photocatalytic water oxidation by the morphological control of LaTiO2N and cobalt oxide
catalysts. J Phys Chem C 118:16344–16351
Mai FD, Lee WLW, Chang JL, Liu SC, Wu CW, Chen CC (2010) Fabrication of porous TiO2 film
on Ti foil by hydrothermal process and its photocatalytic efficiency and mechanisms with ethyl
violet dye. J Hazard Mater 177:864–875
Maicu M, Hidalgo MC, Colón G, Ja N (2011) Comparative study of the Photodeposition of Pt, au
and Pd on pre-sulphated TiO 2 for the photocatalytic decomposition of phenol. J Photochem
Photob A Chem 217:275–283
Maruthamani D, Divakar D, Kumaravel M (2015) Enhanced photocatalytic activity of TiO 2 by
reduced graphene oxide in mineralization of Rhodamine B dye. J Ind Eng Chem 30:33–43
Messih MFA, Ahmed MA, Syhed ASE (2013) Photocatalytic decolorization of Rhodamine B dye
using novel mesoporous SnO 2 -TiO 2 nano mixed oxides prepared by sol-gel method. J
Photochem Photobiol A 260:1–8
Miao H, Hu X, Fan J, Li C, Sun Q, Hao Y, Zhang G, Bai J, Hou X (2015) Hydrothermal synthesis of
TiO 2 nanostructure films and their photoelectrochemical properties. Appl Surf Sci 358:418–424
Michael I, Achilleos D, Lambropoulou V, Osorio Torrens S, Pérez M, Petrovic D, Barceló D, FattaKassinos D (2014) Proposed transformation pathway and evolution profile of diclofenac and
ibuprofen transformation products during (sono)photocatalysis. Appl Catal B Environ
147:1015–1027
Micó MM, Chourdaki S, Bacardit J, Sans C (2010) Comparison between ozonation and
photofenton processes for pesticide methomyl removal in advanced greenhouses. Ozone Sci
Eng 32:259–264
Minggu LJ, Daud WW, Kassim MB (2010) An overview of photocells and photoreactors for
photoelectrochemical water splitting. Int J Hydrog Energy 3:5233–5244
Miwa T, Kaneco S, Katsumata H, Suzuki T, Ohta K, Verma SC (2010) Photocatalytic hydrogen
production from aqueous methanol solution with CuO/Al 2 O 3 /TiO 2 nanocomposite. Int J
Hydrog Energy 35:6554–6560
Mohammadi MR, Fray DJ, Mohammadi A (2008) Sol-gel nanostructured titanium dioxide: controlling the crystal structure, crystallite size, phase transformation, packing and ordering.
Microporous Mesoporous Mater 112:392–402
7 Titanium Oxide-Based Nanomaterials with Photocatalytic Applications. . .
257
