Sartori A, Visentin F, Habra NE, Zorzi CD, Natali M, Garoli D, Gerbasi R, Casarin M, Rossetto G
(2011) Preparation of tetrapod-like ZnO/TiO 2 core-shell nanostructures as photocatalytic powder. Cryst Res Technol 46:885–890
Scheytt T, Mersmann P, Heberer T (2006) Mobility of pharmaceuticals carbamazepine, diclofenac,
ibuprofen, and propyphenazone in miscible-displacement experiments. J Contam Hydrol
83:53–69
Schneider J, Matsuoka M, Takeuchi M, Zhang J, Horiuchi Y, Anpo M, Bahnemann DW (2014)
Understanding TiO 2 photocatalysis: mechanisms and materials. Chem Rev 114:9919–9986
Shah MSAS, Park AR, Zhang K, Park JH, Yoo PJ (2012) Green synthesis of biphasic TiO 2 -reduced
graphene oxide nanocomposites with highly enhanced photocatalytic activity. ACS Appl Mater
Interfaces 4:3893–3901
Shah NS, He X, Khan HM, Khan JA, O’Shea KE, Boccelli DL, Dionysiou DD (2013) Efficient
removal of endosulfan from aqueous solution by UV-C/peroxides: a comparative study. J
Hazard Mater 263:584–592
Silva CG, Sampaio MJ, Marques RRN, Ferreira LA, Tavares PB, Silva AMT, Faria J (2015)
Photocatalytic production of hydrogen from methanol and saccharides using carbon nanotubeTiO 2 catalysts. Appl Catal B Environ 178:82–90
Souvereyns B, Elen K, De Dobbelaere C, Kelchtermans A, Peys N, D’Haen J, Mertens M,
Mullens S, Van den Rul H, Meynen V, Cool P, Hardy A, Van Bael MK (2013) Hydrothermal
synthesis of a concentrated and stable dispersion of TiO 2 nanoparticles. Chem Eng J
223:135–144
Stoyanova A, Hitkova H, Nedelcheva AB, Iordanova R, Ivanova N, Sredkova M (2013) Synthesis
and antibacterial activity of TiO 2 /ZnO nanocomposites prepared via nonhydrolytic route. J
Chem Technol Metal 48:154–161
Stumpf M, Ternes T, Harbere K, Baumann W (1998) Isolierung von Ibuprofen-Metaboliten und
deren Bedeutung als Kontaminanten der aquatischen Umwelt. Vom Wasser 91:291–303
Takahasi R, Matsumoto H, Horie T, Matsuda K (2017) Preparation of porous Titania by Sol–Gel
method using Alkylketene dimers as a template. J Chem Eng Jpn 50:450–454
Tan L, Chai S, Mohamed AR (2012) Synthesis and applications of graphene-based TiO 2
photocatalysts. ChemSusChem 5:1868–1882
Tan LL, Ong WJ, Chai SP, Mohamed AR (2013) Reduced graphene oxide-TiO2 nanocomposite as
a promising visible-light-active photocatalyst for the conversion of carbon dioxide. Nanoscale
Res Lett 8:465
Tanigawa S, Irie H (2016) Visible-light-sensitive two-step overall water-splitting based on band
structure control of titanium dioxide. Appl Catal B Environ 180:1–5
Ternes TA (1998) Occurrence of drugs in Germann sewage treatment plants and rivers. Water Res
32:3245–3260
Thamaphat K, Limsuwan P, Ngotawornchai B (2008) Phase characterization of TiO 2 powder by
XRD and TEM. Nat Sci 42:357–361
Thao LTS, Dang TTT, Khanitchaidecha W, Channei D, Nakaruk A (2017) Photocatalytic degradation of organic dye under UV-A irradiation using TiO 2 -vetiver multifunctional nano particles.
Materials 10:122
Tian SH, Yu YT, Chen DS, Chen X, Xiong Y (2011) Degradation of acid orange II at neutral pH
using Fe 2 (MoO 4 ) 3 as a heterogeneous Fenton-like catalyst. Chem Eng J 169:31–37
Tixier C, Singer H, Oellers S, Müller S (2003) Ocurrence and fate of carbamazepine, ibuprofen,
ketoprofen and naproxen in surface waters. Environ Sci Technol 37:1061–1068
Torres-Martínez LM, Ruiz-Gómez MA (2011) Estudio de las propiedades estructurales, texturales y
catalíticas de TiO 2 dopado con indio y níquel. Ingenierias UANL (XIV) 53:23–53
Voepel P, Smarsly BM (2017) Synthesis of titanium oxide nanostructures in ionic liquids. Z Anorg
Allg Chem 643:3–13
Walter MG, Warren EL, McKone JR, Boettcher SW, Mi Q, Santori EA, Lewis NS (2010) Solar
water splitting cells. Chem Rev 110:6446–6473
260
A. Boudjemaa and S. Gómez-Ruiz
(2011) Preparation of tetrapod-like ZnO/TiO 2 core-shell nanostructures as photocatalytic powder. Cryst Res Technol 46:885–890
Scheytt T, Mersmann P, Heberer T (2006) Mobility of pharmaceuticals carbamazepine, diclofenac,
ibuprofen, and propyphenazone in miscible-displacement experiments. J Contam Hydrol
83:53–69
Schneider J, Matsuoka M, Takeuchi M, Zhang J, Horiuchi Y, Anpo M, Bahnemann DW (2014)
Understanding TiO 2 photocatalysis: mechanisms and materials. Chem Rev 114:9919–9986
Shah MSAS, Park AR, Zhang K, Park JH, Yoo PJ (2012) Green synthesis of biphasic TiO 2 -reduced
graphene oxide nanocomposites with highly enhanced photocatalytic activity. ACS Appl Mater
Interfaces 4:3893–3901
Shah NS, He X, Khan HM, Khan JA, O’Shea KE, Boccelli DL, Dionysiou DD (2013) Efficient
removal of endosulfan from aqueous solution by UV-C/peroxides: a comparative study. J
Hazard Mater 263:584–592
Silva CG, Sampaio MJ, Marques RRN, Ferreira LA, Tavares PB, Silva AMT, Faria J (2015)
Photocatalytic production of hydrogen from methanol and saccharides using carbon nanotubeTiO 2 catalysts. Appl Catal B Environ 178:82–90
Souvereyns B, Elen K, De Dobbelaere C, Kelchtermans A, Peys N, D’Haen J, Mertens M,
Mullens S, Van den Rul H, Meynen V, Cool P, Hardy A, Van Bael MK (2013) Hydrothermal
synthesis of a concentrated and stable dispersion of TiO 2 nanoparticles. Chem Eng J
223:135–144
Stoyanova A, Hitkova H, Nedelcheva AB, Iordanova R, Ivanova N, Sredkova M (2013) Synthesis
and antibacterial activity of TiO 2 /ZnO nanocomposites prepared via nonhydrolytic route. J
Chem Technol Metal 48:154–161
Stumpf M, Ternes T, Harbere K, Baumann W (1998) Isolierung von Ibuprofen-Metaboliten und
deren Bedeutung als Kontaminanten der aquatischen Umwelt. Vom Wasser 91:291–303
Takahasi R, Matsumoto H, Horie T, Matsuda K (2017) Preparation of porous Titania by Sol–Gel
method using Alkylketene dimers as a template. J Chem Eng Jpn 50:450–454
Tan L, Chai S, Mohamed AR (2012) Synthesis and applications of graphene-based TiO 2
photocatalysts. ChemSusChem 5:1868–1882
Tan LL, Ong WJ, Chai SP, Mohamed AR (2013) Reduced graphene oxide-TiO2 nanocomposite as
a promising visible-light-active photocatalyst for the conversion of carbon dioxide. Nanoscale
Res Lett 8:465
Tanigawa S, Irie H (2016) Visible-light-sensitive two-step overall water-splitting based on band
structure control of titanium dioxide. Appl Catal B Environ 180:1–5
Ternes TA (1998) Occurrence of drugs in Germann sewage treatment plants and rivers. Water Res
32:3245–3260
Thamaphat K, Limsuwan P, Ngotawornchai B (2008) Phase characterization of TiO 2 powder by
XRD and TEM. Nat Sci 42:357–361
Thao LTS, Dang TTT, Khanitchaidecha W, Channei D, Nakaruk A (2017) Photocatalytic degradation of organic dye under UV-A irradiation using TiO 2 -vetiver multifunctional nano particles.
Materials 10:122
Tian SH, Yu YT, Chen DS, Chen X, Xiong Y (2011) Degradation of acid orange II at neutral pH
using Fe 2 (MoO 4 ) 3 as a heterogeneous Fenton-like catalyst. Chem Eng J 169:31–37
Tixier C, Singer H, Oellers S, Müller S (2003) Ocurrence and fate of carbamazepine, ibuprofen,
ketoprofen and naproxen in surface waters. Environ Sci Technol 37:1061–1068
Torres-Martínez LM, Ruiz-Gómez MA (2011) Estudio de las propiedades estructurales, texturales y
catalíticas de TiO 2 dopado con indio y níquel. Ingenierias UANL (XIV) 53:23–53
Voepel P, Smarsly BM (2017) Synthesis of titanium oxide nanostructures in ionic liquids. Z Anorg
Allg Chem 643:3–13
Walter MG, Warren EL, McKone JR, Boettcher SW, Mi Q, Santori EA, Lewis NS (2010) Solar
water splitting cells. Chem Rev 110:6446–6473
260
A. Boudjemaa and S. Gómez-Ruiz
