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个人简介

BSc in Chemistry with Biological Science in 2003. PhD in heterogeneous catalysis (2006) with Professor Graham Hutchings, FRS (Direct Synthesis of Hydrogen Peroxide using Catalysts containing Gold) post doctoral research associate in Cardiff Catalysis Institute 2007-2012. JSPS fellowship at Tokyo Metropolitan University with Professor Haruta, 2010. Chancellor's research fellowship awarded 2013 (Cardiff Catalysis Institute, Cardiff University School of Chemistry).

研究领域

Developing new preparative methodologies to produce highly active heterogeneous nanoalloyed precious metal catalysts. Application of these catalysts for a number of catalytic transformations including: Selective hydrogenation Selective oxidation Fossil fuel free synthesis of platform chemicals CO2 utilisation

近期论文

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Giorgi, P.et al. 2017. Bicatalytic multistep reactions en route to the one-pot total synthesis of complex molecules: easy access to chromene and 1,2-dihydroquinoline derivatives from simple substrates. ChemCatChem 9(1), pp. 70-75. (10.1002/cctc.201600925) pdf Ishikawa, S.et al. 2017. Identification of the catalytically active component of Cu?Zr?O catalyst for the hydrogenation of levulinic acid to ?-valerolactone. Green Chemistry 19(1), pp. 225-236. (10.1039/C6GC02598F) pdf He, Q.et al. 2016. Population and hierarchy of active species in gold iron oxide catalysts for carbon monoxide oxidation. Nature Communications 7, article number: 12905. (10.1038/ncomms12905) pdf Crole, D.et al. 2016. Direct synthesis of hydrogen peroxide in water at ambient temperature. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences 472(2190), article number: 20160156. (10.1098/rspa.2016.0156) pdf Akramaz, A.et al. 2016. Gas phase stabiliser-free production of hydrogen peroxide using supported gold-palladium catalysts. Chemical Science (10.1039/C6SC01332E) pdf Jones, D.et al. 2016. The conversion of levulinic acid into ?-valerolactone using Cu?ZrO2catalysts. Catalysis Science & Technology 6(15), pp. 6022-6030. (10.1039/C6CY00382F) Freakley, S.et al. 2016. Palladium-tin catalysts for the direct synthesis of H2O2 with high selectivity. Science 351(6276), pp. 965-968. (10.1126/science.aad5705) Aldosari, D.et al. 2016. Pd-Ru/TiO2 catalyst - an active and selective catalyst for furfural hydrogenation. Catalysis Science & Technology 6, pp. 234-242. (10.1039/C5CY01650A) pdf Villa, A.et al. 2016. Depressing the hydrogenation and decomposition reaction in H2O2 synthesis by supporting gold-palladium nanoparticles on oxygen functionalized carbon nanofibers. Catalysis Science & Technology 6, pp. 694-697. (10.1039/C5CY01880C) Marin, R.et al. 2015. Supercritical antisolvent precipitation of TiO2 with tailored anatase/rutile composition for applications in redox catalysis and Ppotocatalysis. Applied Catalysis A: General 504, pp. 62-73. (10.1016/j.apcata.2015.02.023) pdf He, Y.et al. 2015. Oxidation of aliphatic alcohols by using precious metals supported on hydrotalcite under solvent- and base-free conditions. ChemSusChem 8(19), pp. 3314-3322. (10.1002/cssc.201500503)

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