1 - 1 |
Novel nanomaterials for photocatalysis, photochemistry, and photobiology Preface Rodriguez-Gonzalez V, Hernandez-Gordillo A, Hu YH |
2 - 8 |
Renewable hydrogen harvest process by hydrazine as scavenging electron donor using gold TiO2 photocatalysts Hinojosa-Reyes M, Hernandez-Gordillo A, Zanella R, Rodriguez-Gonzalez V |
9 - 16 |
Enhancing the H-2 evolution from water-methanol solution using Mn2+-Mn+3-Mn4+ redox species of Mn-doped TiO2 sol-gel photocatalysts Perez-Larios A, Hernandez-Gordillo A, Morales-Mendoza G, Lartundo-Rojas L, Mantilla A, Gomez R |
17 - 26 |
Photoelectrocatalytic hydrogen production from oilfield-produced wastewater in a filter-press reactor using TiO2-based photoanodes Jaramillo-Gutierrez MI, Rivero EP, Cruz-Diaz MR, Nino-Gomez ME, Pedraza-Avella JA |
27 - 35 |
Photodegradation of Indigo Carmine dye by CdS nanostructures under blue-light irradiation emitted by LEDs Hernandez-Gordillo A, Rodriguez-Gonzalez V, Oros-Ruiz S, Gomez R |
36 - 45 |
Solar photocatalytic purification of water with Ce-doped TiO2/clay heterostructures Belver C, Bedia J, Alvarez-Montero MA, Rodriguez JJ |
46 - 52 |
Effect of microwave-assisted hydrothermal process parameters on formation of different TiO2 nanostructures Cho SH, Nguyen HH, Gyawali G, Son JE, Sekino T, Joshi B, Kim SH, Jo YH, Kim TH, Lee SW |
53 - 61 |
Differences in the vapour phase photocatalytic degradation of ammonia and ethanol in the presence of water as a function of TiO2 characteristics and the presence of O-2 Sola AC, Sousa DG, Arana J, Diaz OG, Rodriguez MD, de la Piscina PR, Homs N |
62 - 71 |
Combination of Mn oxidation states improves the photocatalytic degradation of phenol with ZnAl LDH materials without a source of O-2 in the reaction system Morales-Mendoza G, Alvarez-Lemus M, Lopez R, Tzompantzi F, Adhikari R, Lee SW, Torres-Martinez LM, Gomez R |
72 - 81 |
Photocatalytic degradation of hazardous Food Yellow 13 in TiO2 and ZnO aqueous and river water suspensions Regulska E, Brus DM, Rodziewicz P, Sawicka S, Karpinska J |
82 - 89 |
Photocatalytic properties of boehmite-SnO2 composites for the degradation of phenol Mendoza-Damian G, Tzompantzi F, Perez-Hernandez R, Gomez R, Hernandez-Gordillo A |
90 - 101 |
Synthesis, characterization and photocatalytic activity of TiO2 nanostructures: Nanotubes, nanofibers, nanowires and nanoparticles Camposeco R, Castillo S, Navarrete J, Gomez R |
102 - 109 |
Enhanced photocatalytic activity of MWCNT/TiO2 heterojunction photocatalysts obtained by microwave assisted synthesis Caudillo-Flores U, Lara-Romero J, Zarate-Medina J, Munoz-Batista MJ, Huirache-Acuna R, Rivera-Munoz EM, Cortes JA |
110 - 119 |
Catalytic activity of the barium hexaferrite with H2O2/visible light irradiation for degradation of Methylene Blue Valero-Luna C, Palomares-Sanchez SA, Ruiz F |
120 - 125 |
Electrocoagulation-photocatalytic process for the treatment of lithographic wastewater. Optimization using response surface methodology (RSM) and kinetic study Suarez-Ezcobar A, Pataquiva-Mateus A, Lopez-Vasquez A |
126 - 135 |
Evaluation of metallurgical slag as a Fenton-type photocatalyst for the degradation of an emerging pollutant: Diclofenac Arzate-Salgado SY, Morales-Perez AA, Solis-Lopez M, Ramirez-Zamora RM |
136 - 143 |
Photoreactivity of metal-organic frameworks in the decolorization of methylene blue in aqueous solution Kozlova EA, Panchenko VN, Hasan Z, Khan NA, Timofeeva MN, Jhung SH |
144 - 152 |
Sputtered bismuth oxide thin films as a potential photocatalytic material Medina JC, Bizarro M, Gomez CL, Depablos-Rivera O, Mirabal-Rojas R, Monroy BM, Fonseca-Garcia A, Perez-Alvarez J, Rodil SE |
153 - 159 |
Photocatalytic conversion of carbon dioxide to methane on TiO2/CdS in aqueous isopropanol solution Park H, Ou HH, Kang U, Choi J, Hoffmann MR |
160 - 167 |
Photocatalytic reduction of carbon dioxide in alkaline medium on La modified sodium tantalate with different co-catalysts under UV-Visible radiation Jeyalakshmi V, Mahalakshmy R, Krishnamurthy KR, Viswanathan B |
168 - 174 |
Degradation of organochlorinated pollutants in water by catalytic hydrodechlorination and photocatalysis Diaz E, Cebrian M, Bahamonde A, Faraldos M, Mohedano AF, Casas JA, Rodrigue JJ |
175 - 187 |
Photocatalytic degradation of ciprofloxacin using mono- (Au, Ag and Cu) and bi- (Au-Ag and Au-Cu) metallic nanoparticles supported on TiO2 under UV-C and simulated sunlight Duran-Alvares JC, Avella E, Ramirez-Zamora RM, Zanella R |
188 - 196 |
Enhanced photocatalytic activities of vacuum activated TiO2 catalysts with Ti3+ and N co-doped Fang WZ, Zhou Y, Dong CC, Xing MY, Zhang JL |
197 - 204 |
Photodynamic inactivation of Escherichia coli with cationic meso-tetraarylporphyrins - The charge number and charge distribution effects Simoes C, Gomes MC, Neves MGPMS, Cunha A, Tome JPC, Tome AC, Cavaleiro JAS, Almeida A, Faustino MAF |
205 - 211 |
The role of catalase and H2O2 in photocatalytic inactivation of Escherichia coli: Genetic and biochemical approaches Gao MH, Ng TW, An TC, Li GY, Yip HY, Zhao HJ, Wong PK |
212 - 218 |
Stabilization of hemoglobin in double layered hydroxides to be used in carbon monoxide bio-oxidation I-synthesis and characterization Netzhualcoyotzi I, Galicia V, Rivera JA, Fetter G, Bosch P |
219 - 225 |
Photocatalytic inactivation of Escherichia coli-The roles of genes in beta-oxidation of fatty acid degradation Chu KH, Huang GC, An TC, Li GY, Yip PL, Ng TW, Yip HY, Zhao HJ, Wong PK |