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mike scurrell
mike scurrell
Professor, Civil and Chemical Engineering, University of South Africa
Email verificata su unisa.ac.za
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Citata da
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Oxidative coupling of methane using oxide catalysts
GJ Hutchings, MS Scurrell, JR Woodhouse
Chemical Society Reviews 18, 251-283, 1989
4821989
Silver nanoparticle catalysed redox reaction: an electron relay effect
K Mallick, M Witcomb, M Scurrell
Materials chemistry and physics 97 (2-3), 283-287, 2006
3062006
Polymer stabilized silver nanoparticles: a photochemical synthesis route
K Mallick, MJ Witcomb, MS Scurrell
Journal of materials science 39, 4459-4463, 2004
2942004
Gas conversion to liquid fuels and chemicals: The methanol route‐catalysis and processes development
T Mokrani, M Scurrell
Catalysis Reviews 51 (1), 1-145, 2009
2312009
Prospects for the direct conversion of light alkanes to petrochemicalfeedstocks and liquid fuels-a review
MS Scurrell
Applied catalysis 32, 1-22, 1987
1931987
Self-assembly of silver nanoparticles in a polymer solvent: formation of a nanochain through nanoscale soldering
K Mallick, MJ Witcomb, MS Scurrell
Materials chemistry and physics 90 (2-3), 221-224, 2005
1832005
Hydroxyapatite as a novel support for gold and ruthenium catalysts: Behaviour in the water gas shift reaction
A Venugopal, MS Scurrell
Applied Catalysis A: General 245 (1), 137-147, 2003
1772003
Polymerization of aniline by auric acid: formation of gold decorated polyaniline nanoballs
K Mallick, MJ Witcomb, A Dinsmore, MS Scurrell
Macromolecular rapid communications 26 (4), 232-235, 2005
1732005
Low temperature reductive pretreatment of Au/Fe2O3 catalysts, TPR/TPO studies and behaviour in the water–gas shift reaction
A Venugopal, MS Scurrell
Applied Catalysis A: General 258 (2), 241-249, 2004
1682004
Fabrication of a metal nanoparticles and polymer nanofibers composite material by an in situ chemical synthetic route
K Mallick, MJ Witcomb, A Dinsmore, MS Scurrell
Langmuir 21 (17), 7964-7967, 2005
1492005
Factors affecting the selectivity of the aromatization of light alkanes on modified ZSM-5 catalysts
MS Scurrell
Applied catalysis 41, 89-98, 1988
1421988
In situ synthesis of copper nanoparticles and poly (o-toluidine): A metal–polymer composite material
K Mallick, MJ Witcomb, MS Scurrell
European polymer journal 42 (3), 670-675, 2006
1352006
Conversion of synthesis gas to dimethyl ether over bifunctional catalytic systems
AC Sofianos, MS Scurrell
Industrial & engineering chemistry research 30 (11), 2372-2378, 1991
1261991
Conversion of methane-ethylene mixtures over sulphate-treated zirconia catalysts
MS Scurrell
Applied catalysis 34, 109-117, 1987
1071987
Light alkanes aromatization to BTX over Zn-ZSM-5 catalysts: Enhancements in BTX selectivity by means of a second transition metal ion
LM Lubango, MS Scurrell
Applied Catalysis A: General 235 (1-2), 265-272, 2002
992002
The gold–ruthenium–iron oxide catalytic system for the low temperature water–gas-shift reaction: The examination of gold–ruthenium interactions
A Venugopal, J Aluha, D Mogano, MS Scurrell
Applied Catalysis A: General 245 (1), 149-158, 2003
912003
CO oxidation over gold nanoparticles supported on TiO2 and TiO2-ZnO: catalytic activity effects due to surface modification of TiO2 with ZnO
K Mallick, MS Scurrell
Applied Catalysis A: General 253 (2), 527-536, 2003
902003
The effect of calcination temperature on the adsorption of nitric oxide on Au-TiO2: Drifts studies
MA Debeila, NJ Coville, MS Scurrell, GR Hearne
Applied Catalysis A: General 291 (1-2), 98-115, 2005
812005
The effect of calcination temperature on the adsorption of nitric oxide on Au-TiO2: Drifts studies
MA Debeila, NJ Coville, MS Scurrell, GR Hearne
Applied Catalysis A: General 291 (1-2), 98-115, 2005
812005
The effect of calcination temperature on the adsorption of nitric oxide on Au-TiO2: Drifts studies
MA Debeila, NJ Coville, MS Scurrell, GR Hearne
Applied Catalysis A: General 291 (1-2), 98-115, 2005
812005
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