J.C. Bertolini
Claude Bernard University Lyon 1
14 Papers
106 Citations
J.C. Bertolini is an academic researcher from Claude Bernard University Lyon 1. The author has contributed to research in topics: Catalysis & Adsorption. The author has an hindex of 10, co-authored 11 publications.
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Papers
Pd/Si3N4 catalysts: preparation, characterization and catalytic activity for the methane oxidation
TL;DR: In this paper, Pd supported on silicon nitride catalysts were prepared by impregnation of Si 3 N 4 with Pd(II) acetylacetonate, and the catalytic precursors were decomposed under oxygen at 350°C and reduced under hydrogen at 300°C.
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Pd/SiC Catalysts: Characterization and Catalytic Activity for the Methane Total Oxidation
TL;DR: In this paper, the Pd(AcAc) 2 complex is decomposed under Ar atmosphere at 400°C and the catalyst presents small metal particles homogeneous in size, but, they are strongly deactivated after ageing under an oxidizing mixture up to 800°C.
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Pd(111) versus Pd–Au(111) in carbon monoxide oxidation under elevated pressures
Agnès Piednoir,Agnès Piednoir,M. A. Languille,M. A. Languille,Laurent Piccolo,Ana Valcarcel,F.J. Cadete Santos Aires,J.C. Bertolini +7 more
TL;DR: In this article, the oxidation of CO on Pd(111) and Pd70Au30 (111) has been studied under pressures up to 100 Torr and gold is found to decrease the surface activity by inhibiting oxygen dissociation.
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Comparison of Pd/(Bulk SiC) Catalysts Prepared by Atomic Beam Deposition and Plasma Sputtering Deposition: Characterization and Catalytic Properties
A. Berthet,Anne-Lise Thomann,F.J. Cadete Santos Aires,M. Brun,C. Deranlot,J.C. Bertolini,J.P. Rozenbaum,Pascal Brault,Pascal Andreazza +8 more
TL;DR: In this paper, Pd on SiC catalysts have been prepared using two different physical processes: atomic beam deposition (ABD) and plasma sputtering deposition (PSD).
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In-situ surface analysis of AuPd(1 1 0) under elevated pressure of CO
M. A. Languille,E. Ehret,H.C. Lee,Cheonwoo Jeong,Ryo Toyoshima,Hiroshi Kondoh,Kazuhiko Mase,Y. Jugnet,J.C. Bertolini,F.J. Cadete Santos Aires,Bongjin Simon Mun +10 more
TL;DR: With the combination of various in-situ surface science tools, surface chemical and structural properties of bimetallic AuPd(1/1/0) alloys are characterized under elevated CO pressure.
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