Reversible formation of a PdC(x) phase in Pd nanoparticles upon CO and O2 exposure.
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Zhi Liu | Knut Deppert | Roberto Felici | Edvin Lundgren | Didier Wermeille | Maria E Messing | Jesper N Andersen | J. Gustafson | E. Lundgren | J. Frenken | D. Wermeille | M. Messing | K. Deppert | Zhi Liu | H. Bluhm | J. N. Andersen | Michael E. Grass | Hendrik Bluhm | Andrea Resta | A. Resta | R. Felici | Joost W M Frenken | Michael E Grass | Rasmus Westerström | Olivier Balmes | Johan Gustafson | Richard van Rijn | Sara Blomberg | R. van Rijn | O. Balmes | S. Blomberg | R. Westerström | J. Andersen
[1] M. M. Slinko,et al. The study of the oscillatory behavior during methane oxidation over Pd catalysts , 2009 .
[2] J. Gustafson,et al. The Pd(100)-(√5 x √5)R27º-O surface oxide revisited , 2003, cond-mat/0304107.
[3] J. Frenken,et al. CO oxidation on Pt(110): scanning tunneling microscopy inside a high-pressure flow reactor. , 2002, Physical review letters.
[4] A. Stierle,et al. Carbon incorporation and deactivation of MgO(001) supported Pd nanoparticles during CO oxidation , 2009 .
[5] S. Dahl,et al. Atomic-Resolution in Situ Transmission Electron Microscopy of a Promoter of a Heterogeneous Catalyst , 2001, Science.
[6] Z. Hussain,et al. New ambient pressure photoemission endstation at Advanced Light Source beamline 9.3.2. , 2010, The Review of scientific instruments.
[7] E. Lundgren,et al. In situ gas–surface interactions: approaching realistic conditions , 2008 .
[8] A. Baiker,et al. Incorporation of carbon into palladium during low-temperature disproportionation of carbon monoxide over palladium/zirconia prepared from glassy palladium-zirconium , 1994 .
[9] B. Hammer,et al. Structure and reactivity of surface oxides on Pt(110) during catalytic CO oxidation. , 2005, Physical review letters.
[10] N. Takagi,et al. Acid strength of support materials as a factor controlling oxidation state of palladium catalyst for propane combustion , 1999 .
[11] V. Violante,et al. In situ measurement of the deuterium (hydrogen) charging of a palladium electrode during electrolysis by energy dispersive x‐ray diffraction , 1995 .
[12] J. Gustafson,et al. Sensitivity of catalysis to surface structure: The example of CO oxidation on Rh under realistic conditions , 2008 .
[13] D. Goodman,et al. CO Dissociation at Elevated Pressures on Supported Pd Nanoclusters , 2004 .
[14] H. Freund,et al. C–O bond scission on "defect-rich and perfect" Pd(111)? , 2004 .
[15] M. Di Michiel,et al. Combining time-resolved hard X-ray diffraction and diffuse reflectance infrared spectroscopy to illuminate CO dissociation and transient carbon storage by supported Pd nanoparticles during CO/NO cycling. , 2010, Journal of the American Chemical Society.
[16] G. Rupprechter,et al. CO dissociation and CO hydrogenation on smooth and ion-bombarded Pd(111): SFG and XPS spectroscopy at mbar pressures , 2004 .
[17] Georg Kresse,et al. Carbon in palladium catalysts: A metastable carbide. , 2010, The Journal of chemical physics.
[18] J. G. Wang,et al. Structure and reactivity of a model catalyst alloy under realistic conditions , 2008 .
[19] A. Stierle,et al. Novel In Situ Probes for Nanocatalysis , 2007 .
[20] R. Schlögl,et al. In Situ X-Ray Photoelectron Spectroscopy Studies of Gas–Solid Interfaces at Near-Ambient Conditions , 2007 .
[21] Glover A. Jones,et al. Interstitial carbon in palladium , 1985 .
[22] D. Goodman,et al. The Formation of PdCx over Pd-Based Catalysts in Vapor-Phase Vinyl Acetate Synthesis: Does a Pd–Au Alloy Catalyst Resist Carbide Formation? , 2004 .
[23] J. Storey,et al. Surface Area Increase on Pd Foils after Oxidation in Excess Methane , 2001 .
[24] Matthias Scheffler,et al. First-principles statistical mechanics study of the stability of a subnanometer thin surface oxide in reactive environments: CO oxidation at Pd(100). , 2007, Physical review letters.
[25] Axel Knop-Gericke,et al. The Roles of Subsurface Carbon and Hydrogen in Palladium-Catalyzed Alkyne Hydrogenation , 2008, Science.
[26] R. Schlögl,et al. The mechanism of carbonate formation on Pd-Al2O3 catalysts. , 2008, Chemical communications.
[27] G. Ertl. Primary steps in catalytic synthesis of ammonia , 1983 .
[28] J. Z. Shyu,et al. Characterization of Pd/γ-alumina catalysts containing ceria , 1988 .
[29] Joost W. M. Frenken,et al. The Reactor-STM: A Real-Space Probe for Operando Nanocatalysis , 2007 .
[30] J. Gustafson,et al. Generation of Pd Model Catalyst Nanoparticles by Spark Discharge , 2010 .
[31] P. Sautet,et al. Surface of Metallic Catalysts under a Pressure of Hydrocarbon Molecules: Metal or Carbide? , 2010 .
[32] N. Kruse,et al. Defect-induced dissociation of CO on palladium , 1991 .
[33] M. Boudart,et al. Disproportionation of CO on small particles of silica-supported palladium , 1985 .
[34] J. Gustafson,et al. Step enhanced dehydrogenation of ethanol on Rh , 2008 .
[35] L. Haack,et al. X-ray photoelectron spectroscopy of Pd/γ-alumina and Pd foil after catalytic methane oxidation , 1995 .