139 - 143 |
Non-localized charge compensation in zeolites: A periodic DFT study of cationic gallium-oxide clusters in mordenite Pidko EA, Hensen EJM, Zhidomirov GM, van Santen RA |
144 - 152 |
"Ir-in-ceria": A highly selective catalyst for preferential CO oxidation Huang YQ, Wang AQ, Li L, Wang XD, Su DS, Zhang T |
153 - 161 |
The mechanism of dimethyl carbonate synthesis on Cu-exchanged zeolite Y Zhang Y, Bell AT |
162 - 179 |
Synthesis of cluster-derived PtFe/SiO2 catalysts for the oxidation of CO Siani A, Alexeev OS, Captain B, Lafaye G, Marecot P, Adams RD, Amiridis MD |
180 - 189 |
Metal-doped epoxy resins: Easily accessible, durable, and highly versatile catalysts Artner J, Bautz H, Fan F, Habicht W, Walter O, Doring M, Arnold U |
190 - 196 |
Surface functionalization of SBA-15-ordered mesoporous silicas: Oxidation of benzene to phenol by nitrous oxide Li Y, Feng Z, van Santen RA, Hensen EJM, Li C |
197 - 205 |
CH3OH oxidation over well-defined supported V(2)O5/Al2O3 catalysts: Influence of vanadium oxide loading and surface vanadium-oxygen functionalities Kim T, Wachs IE |
206 - 212 |
Microwave-promoted racemization and dynamic kinetic resolution of chiral amines over Pd on alkaline earth supports and lipases Parvulescu AN, Van der Eycken E, Jacobs PA, De Vos DE |
213 - 219 |
Transformation of nano-sized vanadyl hydrogen phosphate hemihydrate crystallites to vanadyl pyrophosphate during activation in the presence of n-butane and oxygen Imai H, Kamiya Y, Okuhara T |
220 - 227 |
Metal organic frameworks (MOFs) as catalysts: A combination of Cu2+ and Co2+ MOFs as an efficient catalyst for tetralin oxidation Xamena FXLI, Casanova O, Tailleur RG, Garcia H, Corma A |
228 - 233 |
First use of macroporous silicon loaded with catalyst film for a chemical reaction: A microreformer for producing hydrogen from ethanol steam reforming Llorca J, Casanovas A, Trifonov T, Rodriguez A, Alcubilla R |
234 - 240 |
Dual pulsed-beam controlled mole fraction studies of the catalytic oxidation of CO on supported Pd nanocatalysts Harding CJ, Kunz S, Habibpour V, Teslenko V, Arenz M, Heiz U |
241 - 258 |
Catalytic partial oxidation of methane over a 4% Rh/alpha-Al2O3 catalyst Part I: Kinetic study in annular reactor Donazzi A, Beretta A, Groppi G, Forzatti P |
259 - 268 |
Catalytic partial oxidation of methane over a 4% Rh/alpha-Al2O3 catalyst Part II: Role Of CO2 reforming Donazzi A, Beretta A, Groppi G, Forzatti P |
269 - 278 |
Low-temperature CO oxidation over Au/ZnO/SiO2 catalysts: Some mechanism insights Qian K, Huang WX, Fang J, Lv SS, He B, Jiang ZQ, Wei SQ |
279 - 286 |
Stability of sulfated zirconia and the nature of the catalytically active species in the transesterification of triglycerides Suwannakarn K, Lotero E, Goodwin JG, Lu CQ |
287 - 295 |
Ionic liquid-functionalized salen Mn(III) complexes as tunable separation catalysts for enantioselective epoxidation of styrene Tan R, Yin DH, Yu NY, Jin Y, Zhao HH, Yin DL |
296 - 303 |
Enantioselective hydrogenation of ketopantolactone using Pt-beta-ICN chiral catalyst: Correlation between the solution-state concentration of a nucleophilic beta-isocinchonine-ketopantolactone complex and enantioselectivity Martinek TA, Varga T, Balazsik K, Szollosi G, Fulop F, Bartok M |
304 - 312 |
On the different roles of isocyanate and cyanide species in propene-SCR over silver/alumina Tamm S, Ingelsten HH, Palmqvist AEC |
313 - 323 |
Rate and selectivity of methane oxidation over La0.75Sr0.25CrxMn1-xO3-delta as a function of lattice oxygen stoichiometry under solid oxide fuel cell anode conditions van den Bossche M, McIntosh S |
324 - 334 |
Methylcyclohexane transformation over H-EU-1 zeolite: Selectivity and catalytic role of the acid sites located at the pore mouths Mihindou-Koumba PC, Comparot JD, Laforge S, Magnoux P |
335 - 342 |
Excellent catalytic properties over nanocomposite catalysts for selective hydrogenation of halonitrobenzenes Liang MH, Wang XD, Liu HQ, Liu HC, Wang Y |
343 - 346 |
Highly efficient epoxidation of propylene to propylene oxide over TS-1 using urea plus hydrogen peroxide as oxidizing agent Cheng WG, Wang XS, Li G, Guo XW, Zhang SJ |