Simon Freakley
Simon Freakley
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Palladium-tin catalysts for the direct synthesis of H2O2 with high selectivity
SJ Freakley, Q He, JH Harrhy, L Lu, DA Crole, DJ Morgan, EN Ntainjua, ...
Science 351 (6276), 965-968, 2016
Identification of single-site gold catalysis in acetylene hydrochlorination
G Malta, SA Kondrat, SJ Freakley, CJ Davies, L Lu, S Dawson, A Thetford, ...
Science 355 (6332), 1399-1403, 2017
Aqueous Au-Pd colloids catalyze selective CH4 oxidation to CH3OH with O2 under mild conditions
N Agarwal, SJ Freakley, RU McVicker, SM Althahban, N Dimitratos, Q He, ...
Science 358 (6360), 223-227, 2017
Strategies for designing supported gold–palladium bimetallic catalysts for the direct synthesis of hydrogen peroxide
JK Edwards, SJ Freakley, AF Carley, CJ Kiely, GJ Hutchings
Accounts of chemical research 47 (3), 845-854, 2014
Advances in the direct synthesis of hydrogen peroxide from hydrogen and oxygen
JK Edwards, SJ Freakley, RJ Lewis, JC Pritchard, GJ Hutchings
Catalysis Today 248, 3-9, 2015
The X‐ray photoelectron spectra of Ir, IrO2 and IrCl3 revisited
SJ Freakley, J Ruiz‐Esquius, DJ Morgan
Surface and Interface Analysis 49 (8), 794-799, 2017
Synthesis of stable ligand-free gold–palladium nanoparticles using a simple excess anion method
M Sankar, Q He, M Morad, J Pritchard, SJ Freakley, JK Edwards, ...
ACS nano 6 (8), 6600-6613, 2012
Effect of Reaction Conditions on the Direct Synthesis of Hydrogen Peroxide with a AuPd/TiO2 Catalyst in a Flow Reactor
SJ Freakley, M Piccinini, JK Edwards, EN Ntainjua, JA Moulijn, ...
Acs Catalysis 3 (4), 487-501, 2013
Continuous selective oxidation of methane to methanol over Cu-and Fe-modified ZSM-5 catalysts in a flow reactor
J Xu, RD Armstrong, G Shaw, NF Dummer, SJ Freakley, SH Taylor, ...
Catalysis Today 270, 93-100, 2016
Gold catalysis: a reflection on where we are now
SJ Freakley, Q He, CJ Kiely, GJ Hutchings
Catalysis Letters 145 (1), 71-79, 2015
Synergy and anti-synergy between palladium and gold in nanoparticles dispersed on a reducible support
JH Carter, S Althahban, E Nowicka, SJ Freakley, DJ Morgan, PM Shah, ...
ACS catalysis 6 (10), 6623-6633, 2016
Investigation of the active species in the carbon-supported gold catalyst for acetylene hydrochlorination
X Liu, M Conte, D Elias, L Lu, DJ Morgan, SJ Freakley, P Johnston, ...
Catalysis Science & Technology 6 (13), 5144-5153, 2016
Electrocatalytic synthesis of hydrogen peroxide on Au-Pd nanoparticles: From fundamentals to continuous production
E Pizzutilo, O Kasian, CH Choi, S Cherevko, GJ Hutchings, KJJ Mayrhofer, ...
Chemical Physics Letters 683, 436-442, 2017
Direct synthesis of hydrogen peroxide using Au–Pd-exchanged and supported heteropolyacid catalysts at ambient temperature using water as solvent
EN Ntainjua, M Piccinini, SJ Freakley, JC Pritchard, JK Edwards, ...
Green chemistry 14 (1), 170-181, 2012
Effect of acid pre-treatment on AuPd/SiO 2 catalysts for the direct synthesis of hydrogen peroxide
JK Edwards, SF Parker, J Pritchard, M Piccinini, SJ Freakley, Q He, ...
Catalysis Science & Technology 3 (3), 812-818, 2013
Population and hierarchy of active species in gold iron oxide catalysts for carbon monoxide oxidation
Q He, SJ Freakley, JK Edwards, AF Carley, AY Borisevich, Y Mineo, ...
Nature communications 7 (1), 1-8, 2016
Acetylene hydrochlorination using Au/carbon: a journey towards single site catalysis
G Malta, SJ Freakley, SA Kondrat, GJ Hutchings
Chemical Communications 53 (86), 11733-11746, 2017
Gold–palladium bimetallic catalyst stability: consequences for hydrogen peroxide selectivity
E Pizzutilo, SJ Freakley, S Cherevko, S Venkatesan, GJ Hutchings, ...
ACS catalysis 7 (9), 5699-5705, 2017
Physical mixing of metal acetates: a simple, scalable method to produce active chloride free bimetallic catalysts
SA Kondrat, G Shaw, SJ Freakley, Q He, J Hampton, JK Edwards, ...
Chemical Science 3 (10), 2965-2971, 2012
Deactivation of a single-site gold-on-carbon acetylene hydrochlorination catalyst: An X-ray absorption and inelastic neutron scattering study
G Malta, SA Kondrat, SJ Freakley, CJ Davies, S Dawson, X Liu, L Lu, ...
ACS Catalysis 8 (9), 8493-8505, 2018
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