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Journal Abstract Search


361 related items for PubMed ID: 22643911

  • 1.
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  • 2. Noble metal ionic catalysts.
    Hegde MS, Madras G, Patil KC.
    Acc Chem Res; 2009 Jun 16; 42(6):704-12. PubMed ID: 19425544
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  • 8. Ab initio thermodynamics examination of sulfur species present on Rh, Ni, and binary Rh-Ni surfaces under steam reforming reaction conditions.
    Lee K, Song C, Janik MJ.
    Langmuir; 2012 Apr 03; 28(13):5660-8. PubMed ID: 22385258
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  • 9. Rh-promoted methanol decomposition on cerium oxide thin films.
    Zhou J, Mullins DR.
    J Phys Chem B; 2006 Aug 17; 110(32):15994-6002. PubMed ID: 16898756
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  • 10. Flame synthesis of nanosized Cu-Ce-O, Ni-Ce-O, and Fe-Ce-O catalysts for the water-gas shift (WGS) reaction.
    Pati RK, Lee IC, Hou S, Akhuemonkhan O, Gaskell KJ, Wang Q, Frenkel AI, Chu D, Salamanca-Riba LG, Ehrman SH.
    ACS Appl Mater Interfaces; 2009 Nov 17; 1(11):2624-35. PubMed ID: 20356136
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  • 11. State of supported rhodium nanoparticles for methane catalytic partial oxidation (CPO): FT-IR studies.
    Finocchio E, Busca G, Forzatti P, Groppi G, Beretta A.
    Langmuir; 2007 Sep 25; 23(20):10419-28. PubMed ID: 17718528
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  • 12. A computational study of the influence of the ceria surface termination on the mechanism of CO oxidation of isolated Rh atoms.
    Song W, Jansen AP, Hensen EJ.
    Faraday Discuss; 2013 Sep 25; 162():281-92. PubMed ID: 24015589
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  • 13. FTIR studies of CO adsorption on Rh-Ge/Al2O3 catalysts prepared by surface redox reactions.
    Lafaye G, Mihut C, Especel C, Marécot P, Amiridis MD.
    Langmuir; 2004 Nov 23; 20(24):10612-6. PubMed ID: 15544392
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  • 14. Particle size dependent adsorption and reaction kinetics on reduced and partially oxidized Pd nanoparticles.
    Schalow T, Brandt B, Starr DE, Laurin M, Shaikhutdinov SK, Schauermann S, Libuda J, Freund HJ.
    Phys Chem Chem Phys; 2007 Mar 21; 9(11):1347-61. PubMed ID: 17347708
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  • 15. Effect of CeO2 doping on catalytic activity of Fe2O3/gamma-Al2O(3) catalyst for catalytic wet peroxide oxidation of azo dyes.
    Liu Y, Sun D.
    J Hazard Mater; 2007 May 08; 143(1-2):448-54. PubMed ID: 17049725
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  • 16. Synergetic effect of surface and subsurface Ni species at Pt-Ni bimetallic catalysts for CO oxidation.
    Mu R, Fu Q, Xu H, Zhang H, Huang Y, Jiang Z, Zhang S, Tan D, Bao X.
    J Am Chem Soc; 2011 Feb 16; 133(6):1978-86. PubMed ID: 21247156
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  • 17. Reaction mechanisms for the CO oxidation on Au/CeO(2) catalysts: activity of substitutional Au(3+)/Au(+) cations and deactivation of supported Au(+) adatoms.
    Camellone MF, Fabris S.
    J Am Chem Soc; 2009 Aug 05; 131(30):10473-83. PubMed ID: 19722624
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  • 18. CO oxidation on inverse CeO(x)/Cu(111) catalysts: high catalytic activity and ceria-promoted dissociation of O2.
    Yang F, Graciani J, Evans J, Liu P, Hrbek J, Sanz JF, Rodriguez JA.
    J Am Chem Soc; 2011 Mar 16; 133(10):3444-51. PubMed ID: 21341793
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  • 19. CO oxidation on Pt-modified Rh(111) electrodes.
    Housmans TH, Feliu JM, Gómez R, Koper MT.
    Chemphyschem; 2005 Aug 12; 6(8):1522-9. PubMed ID: 16035023
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  • 20. XPS and 1H NMR study of thermally stabilized Rh/CeO2 catalysts submitted to reduction/oxidation treatments.
    Force C, Roman E, Guil JM, Sanz J.
    Langmuir; 2007 Apr 10; 23(8):4569-74. PubMed ID: 17355155
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