Philippe Serp
0000-0003-1424-2724
151 papers found
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Chemical Vapor Deposition Methods for the Controlled Preparation of Supported Catalytic Materials
Parametric Study for the Growth of Carbon Nanotubes by Catalytic Chemical Vapor Deposition in a Fluidized Bed Reactor
Fluidization, Spouting, and Metal–Organic CVD of Platinum Group Metals on Powders
Growth of carbon nanotubes by fluidized bed catalytic chemical vapor deposition
Controlled-growth of platinum nanoparticles on carbon nanotubes or nanospheres by MOCVD in fluidized bed reactor
Carbon-supported iridium catalysts in the catalytic wet air oxidation of carboxylic acids: kinetics and mechanistic interpretation
Silicon Chemical Vapor Deposition (CVD) on microporous powders in a fluidized bed
A Facile Route to Carbonylhalogenometal Complexes (M = Rh, Ir, Ru, Pt) by Dimethylformamide Decarbonylation
A chemical vapour deposition process for the production of carbon nanospheres
Carbon nanotubes produced by substrate free metalorganic chemical vapor deposition of iron catalysts and ethylene
Novel carbon supported material: highly dispersed platinum particles on carbon nanospheres
Rhodium and palladium complexes from 1,1′ and 1,2 ferrocenylphosphine as bidentate ligands. Versatile coordination
Characterisation and reactivity of activated carbon supported platinum catalysts prepared by fluidised bed organometallic chemical vapour deposition (FBOMCVD)
Production of vapour-grown carbon fibres: influence of the catalyst precursor and operating conditions
Dimethylformamide as a convenient CO source for the facile preparation of rhodium-, iridium- or ruthenium-chlorocarbonyl complexes directly from RhCl3·3H2O, IrCl3·3H2O or RuCl3·3H2O
Single-step preparation of activated carbon supported platinum catalysts by fluidized bed organometallic chemical vapor deposition
Dimethylformamide as a convenient CO source for the facile preparation of rhodium-, iridium- or ruthenium-chlorocarbonyl complexes directly from RhCl3·3H2O, IrCl3·3H2O or RuCl3·3H2O | Utilisation du diméthylformamide comme source de CO pour la préparation directe à partir de RhCl3·3H2O, IrCl3·3H2O ou RuCl3·3H2O de complexes chlorocarbonyle du rhodium, de l'iridium ou du ruthénium
Rhodium-catalyzed hydrocarbonylation of acetic acid into higher acids
MOCVD of rhodium, palladium and platinum complexes on fluidized divided substrates: Novel process for one-step preparation of noble-metal catalysts
Tri(μ-carbonyl)nonacarbonyltetrarhodium, Rh4(μ-CO) 3(CO)9
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