115 - 121 |
Photocatalytic properties of TiO2 modified with gold nanoparticles in the degradation of oxalic acid in aqueous solution Iliev V, Tomova D, Todorovska R, Oliver D, Petrov L, Todorovsky D, Uzunova-Bujnova M |
122 - 129 |
Silica-bound imidazole as a heterogeneous axial ligand for Mn(salophen)Cl: Efficient, recoverable and recyclable catalyst for epoxidation of alkenes and hydroxylation of alkanes with sodium periodate Mirkhani V, Moghadam M, Tangestaninejad S, Bahramian B |
130 - 136 |
DRIFTS and DRS studies of Phillips ethylene polymerization catalysts Panchenko VN, Zakharov VA, Paukshtis EA |
137 - 145 |
Nano-structured nickel-molybdenum carbide catalyst for low-temperature water-gas shift reaction Nagai M, Zahidul AM, Matsuda K |
146 - 150 |
Solvent free esterification reactions using Lewis acids in solid phase catalysis Barbosa SL, Dabdoub MJ, Hurtado GR, Klein SI, Baroni ACM, Cunha C |
151 - 159 |
Mesoporous smectites incorporated with alkali metal cations as solid base catalysts Fujita SI, Bhanage BM, Aoki D, Ochiai Y, Iwasa N, Arai M |
160 - 166 |
Distribution of Bronsted acid sites on beta zeolite H-BEA: A periodic density functional theory calculation Fujita H, Kanougi T, Atoguchi T |
167 - 176 |
Pore-size distributions from nitrogen adsorption revisited: Models comparison with controlled-pore glasses Solcova O, Matejova L, Schneider P |
177 - 188 |
Sunflower oil hydrogenation on Pd/Al2O3 catalysts in single-phase conditions using supercritical propane Piqueras C, Bottini S, Damiani D |
189 - 199 |
n-octane aromatization over Pt/KL of varying morphology and channel lengths Trakarnroek S, Jongpatiwut S, Rirksomboon T, Osuwan S, Resasco DE |
200 - 207 |
Catalytic oxidation of thiophenes and thioethers with hydrogen peroxide in the presence of W-containing layered double hydroxides Hulea V, Maciuca AL, Fajula F, Dumitriu E |
208 - 217 |
Heats of adsorption of the linear and bridged CO species on a Ni/Al2O3 catalyst by using the AEIR method Derrouiche S, Bianchi D |
218 - 223 |
Photocatalytic activities of M2Sb2O7 (M = Ca, Sr) for degrading methyl orange Lin XP, Huang FQ, Wang WD, Wang YM, Xia YJ, Shi JL |