75 - 75 |
Selective Alkane Oxidation American Chemical Society Meeting Spring - 2002 Orlando, Florida, USA - Preface Guliants V, Ozkan US, Gaffney A |
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Oxidative dehydrogenation of propane on pure and silica-dispersed multimetallic oxides based on vanadium and niobium prepared via hydrolytic and non-hydrolytic sol-gel methods Moggi P, Devillers M, Ruiz P, Predieri G, Cauzzi D, Morselli S, Ligabue O |
87 - 94 |
The selective oxidation of propane on Mo-V-Te-Nb-O catalysts The influence of Te-precursor Lopez Nieto JM, Botella P, Solsona B, Oliver JM |
95 - 105 |
An attempt to explain the role of CO2 and N2O as gas dopes in the feed in the oxidative dehydrogenation of propane Dury F, Centeno MA, Gaigneaux EM, Ruiz P |
107 - 116 |
Hydrogen formation during dehydrogenation of C-2-C-4 alkanes in the presence of oxygen: oxidative or non-oxidative? Sinev MY, Fattakhova ZT, Tulenin YP, Stennikov PS, Vislovskii VP |
117 - 135 |
Valuable oxygenates by aerobic oxidation of polymers using metal/bromide homogeneous catalysts Partenheimer W |
137 - 148 |
Correlation of alkane oxidation performance with STM and tunneling spectroscopy measurements of heteropolyacid catalysts Song IK, Lyons JE, Barteau MA |
149 - 157 |
The surface chemistry of hydrocarbon partial oxidation catalysis Zaera F |
159 - 170 |
Kinetic study of oxidative dehydrogenation of propane over Ni-Co molybdate catalyst Barsan MM, Thyrion FC |
171 - 178 |
The partial oxidation of propane to formaldehyde using uranium mixed oxide catalysts Taylor SH, Hutchings GJ, Palacios ML, Lee DF |
179 - 188 |
Silica and boron nitride supported molybdenum and vanadium oxide catalysts for propane oxidation Taylor SH, Pollard AJJ |
189 - 195 |
Heteropolyacid-based catalysts for selective alkane oxidation: mechanism of formation of maleic anhydride from propane Dillon CJ, Holles JH, Davis ME, Labinger JA |
197 - 203 |
Preparation of vanadium phosphate catalysts using water as solvent Bartley JK, Lopez-Sanchez JA, Hutchings GJ |
205 - 213 |
New insight into the role of gas phase reactions in the partial oxidation of butane Marengo S, Comotti P, Galli G |
215 - 225 |
The effect of varying the duration of the butane/air pretreatment on the morphology and reactivity of (VO)(2)P2O7 catalysts Waugh KC, Taufiq-Yap YH |
227 - 245 |
Efficient oxyfunctionalization of n-hexane by aqueous H2O2 over a new TS-PQ (TM) catalyst Halasz I, Agarwal M, Senderov E, Marcus B |
247 - 262 |
Recent developments in the selective oxidation of propane to acrylic and acetic acids Vedrine JC, Novakova EK, Derouane EG |
263 - 286 |
The structure-activity relationships of methane mono-oxygenase mimics in alkane activation Knops-Gerrits PPHJM, Goddard WA |
287 - 296 |
Nanoengineered catalysts for high-temperature methane partial oxidation Schicks J, Neumann D, Specht U, Veser G |
297 - 305 |
Peculiarities of ethane oxidation on V2O5/SiO2 catalysts with different silica structure and morphology Kucherov AV, Ivanov AV, Kucherova TN, Nissenbaum VD, Kustov LM |