mike scurrell
mike scurrell
Professor, Civil and Chemical Engineering, University of South Africa
Email verificata su unisa.ac.za
Titolo
Citata da
Citata da
Anno
Oxidative coupling of methane using oxide catalysts
GJ Hutchings, MS Scurrell, JR Woodhouse
Chemical Society Reviews 18, 251-283, 1989
4211989
Opening Lines: Approaches to the Scholarship of Teaching and Learning.
P Hutchings
Carnegie Publications, the Carnegie Foundation for the Advancement of …, 2000
3052000
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
2262006
Polymer stabilized silver nanoparticles: a photochemical synthesis route
K Mallick, MJ Witcomb, MS Scurrell
Journal of Materials Science 39 (14), 4459-4463, 2004
2092004
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
1952009
Prospects for the direct conversion of light alkanes to petrochemicalfeedstocks and liquid fuels-a review
MS Scurrell
Applied catalysis 32, 1-22, 1987
1781987
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
1622005
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
1562003
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
1522005
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
1502004
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
1312005
Factors affecting the selectivity of the aromatization of light alkanes on modified ZSM-5 catalysts
MS Scurrell
Applied catalysis 41, 89-98, 1988
1221988
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
1072006
Conversion of synthesis gas to dimethyl ether over bifunctional catalytic systems
AC Sofianos, MS Scurrell
Industrial & engineering chemistry research 30 (11), 2372-2378, 1991
1001991
Conversion of methane-ethylene mixtures over sulphate-treated zirconia catalysts
MS Scurrell
Applied catalysis 34, 109-117, 1987
971987
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
892003
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
782003
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
762002
CO oxidation over titanate nanotube supported Au: Deactivation due to bicarbonate
TA Ntho, JA Anderson, MS Scurrell
Journal of Catalysis 261 (1), 94-100, 2009
712009
Reductive routes to stabilized nanogold and relation to catalysis by supported gold
D Boyd, S Golunski, GR Hearne, T Magadzu, K Mallick, MC Raphulu, ...
Applied Catalysis A: General 292, 76-81, 2005
712005
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