1 - 4 |
Method for quantifying redox site densities in metal oxide catalysts: Application to the comparison of turnover frequencies for ethanol oxidative dehydrogenation over alumina-supported VOx, MoOx, and WOx catalysts Nair H, Baertsch CD |
5 - 13 |
Fe-containing ionic liquids as catalysts for the dimerization of bicyclo[2.2.1]hepta-2,5-diene Nguyen MD, Nguyen LV, Jeon EH, Kim JH, Cheong M, Kim HS, Lee JS |
14 - 24 |
Methylammonium-FAU zeolite: Investigation of the basic sites in base catalyzed reactions and its performance Martins L, Holderich W, Cardoso D |
25 - 34 |
Combining high-throughput experimentation, advanced data modeling and fundamental knowledge to develop catalysts for the epoxidation of large olefins and fatty esters Serna P, Baumes LA, Moliner M, Corma A |
35 - 43 |
How important is the (001) plane of M1 for selective oxidation of propane to acrylic acid? Sanfiz AC, Hansen TW, Sakthivel A, Trunschke A, Schlogl R, Knoester A, Brongersma HH, Looi MH, Hamid SBA |
44 - 51 |
Dimer saddle point searches to determine the reactivity of formate on Cu(111) Mei DH, Xu L, Henkelman G |
52 - 60 |
Enhancing the catalytic performance of Pt/ZnO in the selective hydrogenation of cinnamaldehyde by Cr addition to the support Ramos-Fernandez EV, Ferreira AFP, Sepulveda-Escribano A, Kapteijn F, Rodriguez-Reinoso F |
61 - 70 |
Comparison of olefin metathesis by rhenium-containing gamma-alumina or silica-aluminas and by some mesoporous analogues Bakala PC, Briot E, Millot Y, Piquemal JY, Bregeault JM |
71 - 82 |
Dehydration of glycerol in gas phase using heteropolyacid catalysts as active compounds Atia H, Armbruster U, Martin A |
83 - 86 |
Direct observation of olefin homologations on zeolite ZSM-22 and its implications to methanol to olefin conversion Cui ZM, Liu Q, Ma Z, Bian SW, Song WG |
87 - 94 |
Sulphuric acid and Pt treatment of the photocatalytically active titanium dioxide Kozlov DV, Vorontsov AV |
95 - 102 |
In situ FTIR study of the adsorption and reaction of ortho-dichlorobenzene on Pd-Co sulfated zirconia catalysts Aristizabal BH, de Correa CM, Serykh AI, Hetrick CE, Amiridis MD |
103 - 110 |
Surface chemistry and reactivity of well-defined multilayered supported M1Ox/M2Ox/SiO2 catalysts Lee EL, Wachs IE |
111 - 120 |
Arornatization of dimethyl and diethyl ethers on Mo2C-promoted ZSM-5 catalysts Kecskemeti A, Barthos R, Solymosi F |
121 - 130 |
Synthesis and structural characterization of a monomeric di-copper-substituted silicotungstate [gamma-H2SiW10O36Cu2(mu-1,1-N-3)(2)](4-) and the catalysis of oxidative homocoupling of alkynes Yamaguchi K, Kamata K, Yamaguchi S, Kotani M, Mizuno N |
131 - 142 |
Modeling spatially resolved profiles of methane partial oxidation on a Rh foam catalyst with detailed chemistry Nogare DD, Degenstein NJ, Horn R, Canu P, Schmidt LD |
143 - 152 |
Electrocatalytic activity and stability of Pt supported on Sb-doped SnO2 nanoparticles for direct alcohol fuel cells Lee KS, Park IS, Cho YH, Jung DS, Jung N, Park HY, Sung YE |
153 - 164 |
Hydrodesulfurization of dibenzothiophene and its hydrogenated intermediates over sulfided Mo/gamma-Al2O3 Wang HM, Prins R |
165 - 169 |
New innovative gold catalysts prepared by an improved incipient wetness method Baatz C, Decker N, Prusse U |
170 - 176 |
Ruthenium at work in Ru-hydroxyapatite during the aerobic oxidation of benzyl alcohol: An in situ ATR-IR spectroscopy study Mondelli C, Ferri D, Baiker A |
177 - 186 |
Modification of CeO2-ZrO2 mixed oxides by coprecipitated/impregnated Sr: Effect on the microstructure and oxygen storage capacity Fan J, Weng D, Wu XD, Wu XD, Ran R |
187 - 198 |
Propene epoxidation over TiO2-supported Au-Cu alloy catalysts prepared from thiol-capped nanoparticles Llorca J, Dominguez M, Ledesma C, Chimentao RJ, Medina F, Sueiras J, Angurell I, Seco M, Rossell O |
199 - 209 |
Deoxygenation of methylesters over CsNaX Sooknoi T, Danuthai T, Lobban LL, Mallinson RG, Resasco DE |
210 - 218 |
Palladium-gallium intermetallic compounds for the selective hydrogenation of acetylene - Part I: Preparation and structural investigation under reaction conditions Osswald J, Giedigkeit R, Jentoft RE, Armbruster M, Girgsdies F, Kovnir K, Ressler T, Grin Y, Schlogl R |
219 - 227 |
Palladium-gallium intermetallic compounds for the selective hydrogenation of acetylene - Part II: Surface characterization and catalytic performance Osswald J, Kovnir K, Armbruster M, Giedigleit R, Jentoft RE, Wild U, Grin Y, Schlogl R |
228 - 234 |
Investigation on the mechanism of diffusion in mesopore structured ZSM-5 and improved heavy oil conversion Zhao L, Shen BJ, Gao FS, Xu CM |
235 - 242 |
Investigation of CoS2-based thin films as model catalysts for the oxygen reduction reaction Zhu L, Susac D, Teo M, Wong KC, Wong PC, Parsons RR, Bizzotto D, Mitchell KAR, Campbell SA |
243 - 249 |
Selective production of propylene from methanol: Mesoporosity development in high silica HZSM-5 Mei CS, Wen PY, Liu ZC, Liu HX, Wang YD, Yang WM, Xie ZK, Hua WM, Gao Z |
250 - 255 |
One-step conversion of acetone to methyl isobutyl ketone over Pd-mixed oxide catalysts prepared from novel layered double hydroxides Hetterley RD, Mackey R, Jones JTA, Khimyak YZ, Fogg AM, Kozhevnikov IV |
256 - 264 |
Spectroscopic evidence for the adsorption of propene on gold nanoparticles during the hydro-epoxidation of propene Nijhuis TA, Sacaliuc E, Beale AM, van der Eerden AMJ, Schouten JC, Weckhuysen BM |
265 - 272 |
Enhancement of catalytic performance by creating shell layers on sulfonic acid-functionalized monodispersed mesoporous silica spheres Suzuki TM, Nakamura T, Sudo E, Akimoto Y, Yano K |
273 - 288 |
Detailed kinetic modeling of NOx storage and reduction with hydrogen as the reducing agent and in the presence of CO2 and H2O over a Pt/Ba/Al catalyst Lindholm A, Currier NW, Li JH, Yezerets A, Olsson L |