1 |
Influence of phosphorous addition on Bi3Mo2Fe1 oxide catalysts for the oxidative dehydrogenation of 1-butene Park JH, Shin CH Korean Journal of Chemical Engineering, 33(3), 823, 2016 |
2 |
On the role of the residual iron growth catalyst in the gasification of multi-walled carbon nanotubes with carbon dioxide Jin C, Xia W, Chen PR, Muhler M Catalysis Today, 186(1), 128, 2012 |
3 |
Interaction of water with the clean and oxygen pre-covered Ir(111) surface Pan M, Hoang S, Mullins CB Catalysis Today, 160(1), 198, 2011 |
4 |
The Effect of Acidity and Oxygen on the NOx Reduction by Methane Using Pd/Sulphated Catalysts Roseno KTD, Baldanza MAS, Schmal M Catalysis Letters, 140(3-4), 140, 2010 |
5 |
Oxygen non-stoichiometry in perovskitic catalysts: Impact on activity for the flameless combustion of methane Rossetti I, Biffi C, Forni L Chemical Engineering Journal, 162(2), 768, 2010 |
6 |
The application of temperature-programmed desorption, adsorption isotherms and temperature-programmed oxidation to investigate the interaction of CO with alumina-supported palladium catalysts* Lear T, Hamilton NG, Lennon D Catalysis Today, 126(1-2), 219, 2007 |
7 |
Temperature-programmed desorption/decomposition with simultaneous DRIFTS analysis: adsorbed pyridine on sulfated ZrO2 and Pt-promoted sulfated ZrO2 Stevens RW, Chuang SSC, Davis BH Thermochimica Acta, 407(1-2), 61, 2003 |
8 |
Temperature-programmed desorption/surface reaction (TPD/TPSR) study of Fe-exchanged ZSM-5 for selective catalytic reduction of nitric oxide by ammonia Long RQ, Yang RT Journal of Catalysis, 198(1), 20, 2001 |
9 |
Dissociative adsorption of monomethylsilane on Si(100) as revealed by comparative temperature-programmed desorption studies on H/, C2H2/, and MMS/Si(100) Nakazawa H, Suemitsu M Applied Surface Science, 162, 139, 2000 |