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Istvan T Horvath
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Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
S Chatrchyan, V Khachatryan, AM Sirunyan, A Tumasyan, W Adam, ...
Physics Letters B 716 (1), 30-61, 2012
20848*2012
Valorization of biomass: deriving more value from waste
CO Tuck, E Pérez, IT Horváth, RA Sheldon, M Poliakoff
Science 337 (6095), 695-699, 2012
21482012
Facile catalyst separation without water: fluorous biphase hydroformylation of olefins
IT Horváth, J Rábai
Science 266 (5182), 72-75, 1994
18621994
γ-Valerolactone—a sustainable liquid for energy and carbon-based chemicals
IT Horváth, H Mehdi, V Fábos, L Boda, LT Mika
Green Chemistry 10 (2), 238-242, 2008
10772008
Fluorous biphase chemistry
IT Horváth
Accounts of chemical research 31 (10), 641-650, 1998
10751998
Handbook of fluorous chemistry
JA Gladysz, DP Curran, IT Horváth
John Wiley & Sons, 2006
7982006
Innovations and green chemistry
IT Horvath, PT Anastas
Chemical reviews 107 (6), 2169-2173, 2007
6812007
Integration of homogeneous and heterogeneous catalytic processes for a multi-step conversion of biomass: from sucrose to levulinic acid, γ-valerolactone, 1, 4-pentanediol, 2 …
H Mehdi, V Fábos, R Tuba, A Bodor, LT Mika, IT Horváth
Topics in Catalysis 48, 49-54, 2008
5452008
Solvents from nature
IT Horváth
Green Chemistry 10 (10), 1024-1028, 2008
3722008
Multiphase homogeneous catalysis
B Cornils, WA Herrmann, IT Horváth, W Leitner, S Mecking, ...
Wiley-VCH Verlag, 2005
3522005
Molecular engineering in homogeneous catalysis: One-phase catalysis coupled with biphase catalyst separation. The fluorous-soluble HRh (CO){P [CH2CH2 (CF2) 5CF3] 3} 3 …
IT Horváth, G Kiss, RA Cook, JE Bond, PA Stevens, J Rábai, EJ Mozeleski
Journal of the American Chemical Society 120 (13), 3133-3143, 1998
3371998
A gut bacterial amyloid promotes α-synuclein aggregation and motor impairment in mice
TR Sampson, C Challis, N Jain, A Moiseyenko, MS Ladinsky, GG Shastri, ...
elife 9, e53111, 2020
3212020
Catalytic conversion of fructose, glucose, and sucrose to 5-(hydroxymethyl) furfural and levulinic and formic acids in γ-valerolactone as a green solvent
L Qi, YF Mui, SW Lo, MY Lui, GR Akien, IT Horváth
Acs catalysis 4 (5), 1470-1477, 2014
3212014
A third class of gamma-ray bursts?
I Horváth
The Astrophysical Journal 508 (2), 757, 1998
2681998
Introduction: green chemistry
IT Horváth, PT Anastas
Chemical Reviews 107 (6), 2167-2168, 2007
2432007
Molecular mapping of the acid catalysed dehydration of fructose
GR Akien, L Qi, IT Horváth
Chemical Communications 48 (47), 5850-5852, 2012
2372012
The culture of migration of rural Romanian youth
I Horváth
Journal of ethnic and migration studies 34 (5), 771-786, 2008
2212008
Gamma-valerolactone-based solvents
D Fegyverneki, L Orha, G Láng, IT Horváth
Tetrahedron 66 (5), 1078-1081, 2010
2172010
Transition metal catalysis in fluorous media: practical application of a new immobilization principle to rhodium-catalyzed hydroborations of alkenes and alkynes
JJJ Juliette, D Rutherford, IT Horváth, JA Gladysz
Journal of the American Chemical Society 121 (12), 2696-2704, 1999
2141999
Catalytic Conversion of Fructose to γ-Valerolactone in γ-Valerolactone
L Qi, IT Horváth
Acs Catalysis 2 (11), 2247-2249, 2012
1972012
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