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个人简介

Gábor Laurenczy was born in 1954, in Békéscsaba, Hungary. He graduated in 1978 from Lajos Kossuth University as a chemist with honours. He started his academic carrier in the Department of Inorganic & Analytical Chemistry of Kossuth University in 1978. In 1981 he obtained a Ph.D. in chemistry with honours, and in 1984 he became assistant professor. Since 1985 he works in Lausanne, in the Department of Inorganic and Analytical Chemistry, University of Lausanne, in 1986 as assistant, from 1987 as first assistant, from 1991 as maître assistant and since 1998 as maître d'enseignement et de recherche (Teaching: general, inorganic and analytical chemistry, instrumental analysis). In 1991 he has obtained the habilitation of the Hungarian Academy of Sciences, with the title "kandidátus". Since 1997 he is member of the Editorial Board of the Acta Chimica Hungarica - Models in Chemistry. He was the chairman of the European COST D10 Action: Innovative Methods and Techniques for Chemical Transformation. He represents Switzerland in the Management Committee of the new European COST Action D29: Sustainable/Green Chemistry and Chemical Technology. Since 2002 he is the chairman of the European COST D30 Action: High Pressure Tuning of Chemical and Biochemical Processes. Since 2010: Member of the Editorial Board of BioInorganic Mechanisms.

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Formic Acid Dehydrogenation Catalysed by Tris(TPPTS) Ruthenium Species: Mechanism of the Initial "Fast" Cycle. A. Thevenon, E. Frost-Pennington, G. Weijia, A. F. Dalebrook and G. Laurenczy. in Chemcatchem, vol. 6, num. 11, p. 3146-3152, 2014. Metal-Free Catalyst for the Chemoselective Methylation of Amines Using Carbon Dioxide as a Carbon Source. S. Das, F. D. Bobbink, G. Laurenczy and P. J. Dyson. in Angewandte Chemie-International Edition, vol. 53, num. 47, p. 12876-12879, 2014. Base-Free Non-Noble-Metal-Catalyzed Hydrogen Generation from Formic Acid: Scope and Mechanistic Insights. D. Mellmann, E. Barsch, M. Bauer, K. Grabow, A. Boddien, A. Kammer, P. Sponholz, U. Bentrup, R. Jackstell, H. Junge, G. Laurenczy, R. Ludwig and M. Beller. in Chemistry - A European Journal, vol. 20, num. 42, p. 13589-13602, 2014. Hydrogen Production by Selective Dehydrogenation of HCOOH Catalyzed by Ru-Biaryl Sulfonated Phosphines in Aqueous Solution. A. Guerriero, H. Bricout, K. Sordakis, M. Peruzzini, E. Monflier, F. Hapiot, G. Laurenczy and L. Gonsalvi. in ACS Catalysis, vol. 4, num. 9, p. 3002-3012, 2014. A novel platinum nanocatalyst for the oxidation of 5-Hydroxymethylfurfural into 2,5-Furandicarboxylic acid under mild conditions. S. Siankevich, G. Savoglidis, Z. Fei, G. Laurenczy, D. T. L. Alexander, N. Yan and P. J. Dyson. in Journal Of Catalysis, vol. 315, p. 67-74, 2014. Enhanced Conversion of Carbohydrates to the Platform Chemical 5-Hydroxymethylfurfural Using Designer Ionic Liquids. S. Siankevich, Z. Fei, R. Scopelliti, G. Laurenczy, S. Katsyuba, N. Yan and P. J. Dyson. in Chemsuschem, vol. 7, num. 6, p. 1647-1654, 2014. Direct synthesis of formic acid from carbon dioxide by hydrogenation in acidic media. S. Moret, P. J. Dyson and G. Laurenczy. in Nature Communications, vol. 5, 2014. Electrostatic and Non-covalent Interactions in Dicationic Imidazolium-Sulfonium Salts with Mixed Anions. Z. Fei, D.-R. Zhu, N. Yan, R. Scopelliti, S. A. Katsuba, G. Laurenczy, D. M. Chisholm, J. S. Mcindoe, K. R. Seddon and P. J. Dyson. in Chemistry-A European Journal, vol. 20, num. 15, p. 4273-4283, 2014. Chemical Equilibria in Formic Acid/Amine-CO2 Cycles under Isochoric Conditions using a Ruthenium(II) 1,2-Bis(diphenylphosphino)ethane Catalyst. K. Sordakis, M. Beller and G. Laurenczy. in ChemCatChem, vol. 6, num. 1, p. 96-99, 2014. Amide bond formation via C(sp(3))-H bond functionalization and CO insertion. H. Liu, G. Laurenczy, N. Yan and P. J. Dyson. in Chemical Communications, vol. 50, num. 3, p. 341-343, 2014. Heterogeneous Silica-Supported Ruthenium Phosphine Catalysts for Selective Formic Acid Decomposition. W. Gan, P. J. Dyson and G. Laurenczy. in ChemCatChem, vol. 5, p. 3124-3130, 2013. Cycloaddition of CO2 to epoxides catalyzed by imidazolium-based polymeric ionic liquids. S. Ghazali-Esfahani, H. Song, E. Paunescu, F. D. Bobbink, H. Liu, Z. Fei, G. Laurenczy, M. Bagherzadeh, N. Yan and P. J. Dyson. in Green Chemistry, vol. 15, num. 6, p. 1584-1589, 2013. How Strong Is Hydrogen Bonding in Ionic Liquids? Combined X-ray Crystallographic, Infrared/Raman Spectroscopic, and Density Functional Theory Study. S. A. Katsyuba, M. V. Vener, E. E. Zvereva, Z. Fei, R. Scopelliti, G. Laurenczy, N. Yan, E. Paunescu and P. J. Dyson. in Journal Of Physical Chemistry B, vol. 117, num. 30, p. 9094-9105, 2013. Hydrogen storage: beyond conventional methods. A. F. Dalebrook, W. Gan, M. Grasemann, S. Moret and G. Laurenczy. in Chemical Communications, vol. 49, p. 8735-8751, 2013. Ruthenium(II)-Catalyzed Hydrogen Generation from Formic Acid using Cationic, Ammoniomethyl-Substituted Triarylphosphine Ligands. W. Gan, D. J. M. Snelders, P. J. Dyson and G. Laurenczy. in ChemCatChem, vol. 5, num. 5, p. 1126-1132, 2013. Development of Palladium Surface-Enriched Heteronuclear Au-Pd Nanoparticle Dehalogenation Catalysts in an Ionic Liquid. X. Yuan, G. Sun, H. Asakura, T. Tanaka, X. Chen, Y. Yuan, G. Laurenczy, Y. Kou, P. J. Dyson and N. Yan. in Chemistry - A European Journal, vol. 19, num. 4, p. 1227-1234, 2013. Direct, in situ determination of pH and solute concentrations in formic acid dehydrogenation and CO2 hydrogenation in pressurised aqueous solutions using 1H and 13C NMR spectroscopy. S. Moret, P. J. Dyson and G. Laurenczy. in Dalton Transactions, vol. 42, p. 4353-4356, 2013. Classical and non-classical phosphine-Ru(ii)-hydrides in aqueous solutions: many, various, and useful. G. Papp, H. Horváth, G. Laurenczy, I. Szatmári, Á. Kathó and F. Joó. in Dalton Transactions, vol. 42, num. 2, p. 521, 2013. Tuning the chemoselectivity of Rh nanoparticle catalysts by site selective poisoning with phosphine ligands: the hydrogenation of functionalized aromatic compounds.. D. J. M. Snelders, N. Yan, W. Gan, G. Laurenczy and P. J. Dyson. in ACS Catalysis, vol. 2, p. 201-207, 2012. Towards the development of a hydrogen battery. A. Boddien, C. Federsel, P. Sponholz, D. Mellmann, R. Jackstell, H. Junge, G. Laurenczy and M. Beller. in Energy & Environmental Science, vol. 5, num. 10, p. 8907, 2012.

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