247 - 253 |
Decarbonylation and Co Adsorption on Cluster-Derived Iron Catalyst - Surface Formation and Coordinate Geometry of Fe-3(Co)(6)(Mu(3)-Co)/Al2O3 Kou Y, Suo ZH, Wang HL |
254 - 267 |
Application of Isotopic Transient Kinetics to Vinyl-Acetate Catalysis Crathorne EA, Macgowan D, Morris SR, Rawlinson AP |
268 - 277 |
Molecular-Structures and Reactivity of Supported Molybdenum Oxide Catalysts Kim DS, Wachs IE, Segawa K |
278 - 291 |
N2O Reduction by Co over an Alumina-Supported Pt Catalyst - Forced Composition Cycling Sadhankar RR, Lynch DT |
292 - 299 |
Oscillating Catalytic Co Oxidation on a Platinum Field Emitter Tip - Determination of a Reactive Phase-Diagram by Field Electron-Microscopy Lim YS, Berdau M, Naschitzki M, Ehsasi M, Block JH |
300 - 306 |
Mechanism of COS Hydrolysis on Alumina Hoggan PE, Aboulayt A, Pieplu A, Nortier P, Lavalley JC |
307 - 316 |
Infrared Spectroscopic Study of the Adsorption of Nitro-Compounds and Amines on Cobalt Oxide Meijers S, Ponec V |
317 - 325 |
MgO-Supported (Ir-6(Co)(15))(2-) - Catalyst for Co Hydrogenation Kawi S, Gates BC |
326 - 343 |
Vanadia-Titania Aerogels .1. Preparation, Morphological Properties, and Activity for the Selective Catalytic Reduction of No by NH3 Schneider M, Maciejewski M, Tschudin S, Wokaun A, Baiker A |
344 - 355 |
Vanadia-Titania Aerogels .2. Spectroscopic Investigation of the Structural-Properties Scharf U, Schneider M, Baiker A, Wokaun A |
356 - 363 |
The Active-Sites of Manganese-Containing and Cobalt-Containing Catalysts in the Selective Gas-Phase Reduction of Nitrobenzene Maltha A, Kist HF, Brunet B, Ziolkowski J, Onishi H, Iwasawa Y, Ponec V |
364 - 374 |
Manganese Oxides as Catalysts for the Selective Reduction of Nitrobenzene to Nitrosobenzene Maltha A, Favre TL, Kist HF, Zuur AP, Ponec V |
375 - 389 |
Investigation of the Mechanism of Ammonia Oxidation and Oxygen-Exchange over Vanadia Catalysts Using N-15 and O-18 Tracer Studies Ozkan US, Cai YP, Kumthekar MW |
390 - 403 |
Investigation of the Reaction Pathways in Selective Catalytic Reduction of No with NH3 over V2O5 Catalysts - Isotopic Labeling Studies Using O-18(2), (NH3)-N-15, (No)-N-15, and (No1)-N-15-O-18 Ozkan US, Cai YP, Kumthekar MW |
404 - 413 |
Pd1Ni99 and Pd5Ni95 - Pd Surface Segregation and Reactivity for the Hydrogenation of 1,3-Butadiene Miegge P, Rousset JL, Tardy B, Massardier J, Bertolini JC |
414 - 427 |
Structure-Function Relations in Molybdenum Sulfide Catalysts - The rim-Edge Model Daage M, Chianelli RR |
428 - 437 |
Hydrogen and Co Intrapellet Diffusion Effects in Ruthenium-Catalyzed Hydrocarbon Synthesis Madon RJ, Iglesia E |
438 - 448 |
N-Butane Hydrogenolysis at Sn/Pt(111) Surface Alloys Szanyi J, Anderson S, Paffett MT |
449 - 457 |
Characterization of Catalytically Active-Sites on Aluminum-Oxides, Hydroxyfluorides, and Fluorides in Correlation with Their Catalytic Behavior Hess A, Kemnitz E |
458 - 464 |
On the Reaction-Mechanism for Hydrocarbon Formation from Methanol over SAPO-34 .1. Isotopic Labeling Studies of the Co-Reaction of Ethene and Methanol Dahl IM, Kolboe S |
465 - 473 |
Catalytic Conversion of Propane to Aromatics - Effects of Adding Ga and/or Pt to HZSM-5 Kwak BS, Sachtler WM, Haag WO |
474 - 485 |
In-Situ TEM Investigation of Processes Catalyzed by Pd-Ni Alloy Particles on Carbon Substrates in the Presence and Absence of Oxygen Anton R, Reetz O, Schmidt AA |
486 - 488 |
Hydrogen Oxygen Titration Method for Measurement of Pd Dispersion on Supported Catalysts Suh DJ, Park TJ, Ihm SK |