1 - 2 |
Introduction by guest editors Keller N, Robert D, Fernandez-Ibanez P, Malato S |
3 - 9 |
Photocatalytic treatment of saccharin and bisphenol-A in the presence of TiO2 nanocomposites tuned by Sn(IV) Davididou K, Hale E, Lane N, Chatzisymeon E, Pichavant A, Hochepied JF |
10 - 14 |
Microcontaminant removal in secondary effluents by solar photo-Fenton at circumneutral pH in raceway pond reactors De la Obra I, Ponce-Robles L, Miralles-Cuevas S, Oller I, Malato S, Perez JAS |
15 - 21 |
Legionella jordanis inactivation in water by solar driven processes: EMA-qPCR versus culture-based analyses for new mechanistic insights Polo-Lopez MI, Castro-Alferez M, Nahim-Granados S, Malato S, Fernandez-Ibanez P |
22 - 29 |
Decahedral anatase titania particles immobilized on zeolitic materials for photocatalytic degradation of VOC Jansson I, Kobayashi K, Hori H, Sanchez B, Ohtani B, Suarez S |
30 - 36 |
A simple non-aqueous route to nano-perovskite mixed oxides with improved catalytic properties Hou LW, Zhang H, Dong LH, Zhang L, Duprez D, Royer S |
37 - 44 |
Delaminated kaolinites as potential photocatalysts: Tracking degradation of Na-benzenesulfonate test compound adsorbed on the dry surface of kaolinite nanostructures Szabo P, Zsirka B, Fertig D, Horvath E, Csizmadia T, Kristof J |
45 - 51 |
Novel'Pickering' modified TiO2 photocatalysts with high De-NOx efficiency Karapati S, Giannakopoulou T, Todorova N, Boukos N, Papailias I, Dimotikali D, Trapalis C |
52 - 58 |
Titanium and zirconium-based mixed oxides prepared by using pressurized and supercritical fluids: On novel preparation, microstructure and photocatalytic properties in the photocatalytic reduction of CO2 Koci K, Matejova L, Troppova I, Edelmannova M, Prostejovsky T, Peikertova P, Brunatova T, Lang J, Capek L, Obalova L |
59 - 64 |
Anatase TiO2 nanotube arrays and titania films on titanium mesh for photocatalytic NOx removal and water cleaning Martin M, Leonid S, Tomas R, Jan S, Jaroslav K, Mariana K, Michaela J, Frantisek P, Gustav P |
65 - 69 |
Layered Dion-Jacobson type niobium oxides for photocatalytic hydrogen production prepared via molten salt synthesis Kulischow N, Ladasiu C, Marschall R |
70 - 77 |
Selective photocatalytic oxidation of benzyl alcohol to benzaldehyde by using metal-loaded g-C-3 N-4 photocatalysts Lima MJ, Tavares PB, Silva AMT, Silva CG, Faria JL |
78 - 84 |
Cu/TiO2 photocatalysts for the conversion of acetic acid into biogas and hydrogen Amoros-Perez A, Cano-Casanova L, Lillo-Rodenas MA, Roman-Martinez M |
85 - 90 |
Promoter effect of Ga in Pt/Ga-TiO2 catalysts for the photo-production of H-2 from aqueous solutions of ethanol Sola AC, Gosser MB, de la Piscina PR, Homs N |
91 - 98 |
Novel preparation of ZnS from Zn-5(CO3)(2)(OH)(6) by the hydro-or solvothermal method for H-2 production Aguilar O, Tzompantzi F, Perez-Hernandez R, Gomez R, Hernandez-Gordillo A |
99 - 105 |
Hematite photoanodes for solar water splitting: Directly sputtered vs. anodically oxidized sputtered Fe Krysa J, Zlamal M, Paugova S, Kotrla T, Kment S, Hubftcka Z |
106 - 112 |
Morphological effect of ZnO nanoflakes and nanobars on the photocatalytic dye degradation Portillo-Velez NS, Hernandez-Gordillo A, Bizarro M |
113 - 121 |
Growth of TiO2 nano-wall on activated carbon fibers for enhancing the photocatalytic oxidation of benzene in aqueous phase Sharma A, Lee BK |
122 - 129 |
Self-supported Co-Ni-P ternary nanowire electrodes for highly efficient and stable electrocatalytic hydrogen evolution in acidic solution Li W, Xiong DH, Gao XF, Song WG, Xia F, Liu LF |
130 - 136 |
Photoelectrochemical and structural properties of TiO2 nanotubes and nanorods grown on FTO substrate: Comparative study between electrochemical anodization and hydrothermal method used for the nanostructures fabrication Kmentova H, Kment S, Wang LY, Pausoya S, Vaclayu T, Kuzel R, Han H, Hubicka Z, Zlamal M, Olejnicek J, Cada M, Krysa J, Zboril R |
137 - 141 |
Transparent alpha-Fe2O3/TiO2 nanotubular photoanodes Zlamal M, Pausova S, Kment S, Hubicka Z, Krysa J |
142 - 147 |
Transparent titania-zirconia-silica thin films for self-cleaning and photocatalytic applications Vodisek N, Ramanujachary K, Brezova V, Stangar UL |
148 - 154 |
Aqueous ammonia abatement on Pt- and Ru-modified TiO2: Selectivity effects of the metal nanoparticles deposition method Dozzi MV, Brocato S, Marra G, Tozzola G, Meda L, Selli E |
155 - 160 |
Correlations between photocatalytic activity and chemical structure of Cu-modified TiO2-SiO2 nanoparticle composites Cizmar T, Stangar UL, Arcon I |
161 - 168 |
Assessing the photoelectrochemical properties of C, N, F codoped TiO2 nanotubes of different lengths Chatzitakis A, Grandcolas M, Xu KQ, Mei S, Yang J, Jensen IJT, Simon C, Norby T |
169 - 175 |
Photocatalytic decolorization of azo dyes on TiO2: Prediction of mechanism via conceptual DFT Turkten N, Cinar Z |
176 - 181 |
Photocatalytic activity of TiO2-WO3 mixed oxides in formic acid oxidation Riboni F, Dozzi MV, Paganini MC, Giamello E, Selli E |
182 - 188 |
Impact of the annealing temperature on Pt/g-C3N4 structure, activity and selectivity between photodegradation and water splitting Caux M, Fina F, Irvine JTS, Idriss H, Howe R |
189 - 195 |
Graphene oxide-TiO2 and reduced graphene oxide-TiO2 nanocomposites: Insight in charge-carrier lifetime measurements Kusiak-Nejman E, Wanag A, Kowalczyk L, Kapica-Kozar J, Colbeau-Justin C, Medrano MGM, Morawski AW |
196 - 202 |
Durability of Cementitious Photocatalytic Building Materials Boonen E, Beeldens A, Dirkx I, Bams V |
203 - 209 |
TiO2 cement-based materials: Understanding optical properties and electronic band structure of complex matrices Jimenez-Relinque E, Llorente I, Castellote M |