Au–Rh and Au–Pd nanocatalysts supported on rutile titania nanorods: structure and chemical stability

Author:

Konuspayeva Zere1234,Afanasiev Pavel1234,Nguyen Thanh-Son1234,Di Felice Luca1234,Morfin Franck1234ORCID,Nguyen Nhat-Tai56784,Nelayah Jaysen56784,Ricolleau Christian56784,Li Z. Y.910111213,Yuan Jun14151613ORCID,Berhault Gilles1234,Piccolo Laurent1234

Affiliation:

1. Institut de recherches sur la catalyse et l'environnement de Lyon (IRCELYON)

2. UMR 5256 CNRS & Université Claude Bernard – Lyon 1

3. 69626 Villeurbanne

4. France

5. Laboratoire Matériaux et Phénomènes Quantiques (MPQ)

6. UMR 7162 CNRS & Université Paris-Diderot

7. Bâtiment Condorcet

8. 75205 Paris Cedex 13

9. Nanoscale Physics Research Laboratory

10. School of Physics and Astronomy

11. University of Birmingham

12. Birmingham B15 2TT

13. UK

14. Department of Physics

15. University of York

16. York

Abstract

Au–Rh and Au–Pd nanoalloys synthesized by colloidal methods and immobilized on rutile titania nanorods are more stable than their monometallic counterparts for tetralin hydrogenation in the presence of sulfur.

Funder

Agence Nationale de la Recherche

Publisher

Royal Society of Chemistry (RSC)

Subject

Physical and Theoretical Chemistry,General Physics and Astronomy

Reference55 articles.

1. Nanoalloys:  From Theory to Applications of Alloy Clusters and Nanoparticles

2. L. Piccolo , in Nanoalloys: Synthesis, Structure and Properties, Engineering Materials, ed. D. Alloyeau, C. Mottet and C. Ricolleau, Springer-Verlag, London, 2012, pp. 369–404

3. Aromatic Hydrogenation Catalysis: A Review

4. Thiotolerant Ir/SiO2–Al2O3 bifunctional catalysts: Effect of metal–acid site balance on tetralin hydroconversion

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