Access the full text.
Sign up today, get DeepDyve free for 14 days.
Yixin Zhao, Emil Hernández-Pagán, N. Vargas‐Barbosa, J. Dysart, T. Mallouk (2011)
A High Yield Synthesis of Ligand-Free Iridium Oxide Nanoparticles with High Electrocatalytic ActivityJournal of Physical Chemistry Letters, 2
M. Valden, X. Lai, D. Goodman (1998)
Onset of catalytic activity of gold clusters on titania with the appearance of nonmetallic propertiesScience, 281 5383
S. Mostafa, F. Behafarid, J. Croy, L. Ono, Long Li, Judith Yang, A. Frenkel, B. Cuenya (2010)
Shape-dependent catalytic properties of Pt nanoparticles.Journal of the American Chemical Society, 132 44
G. Kresse, J. Furthmüller (1996)
Efficient iterative schemes for ab initio total-energy calculations using a plane-wave basis set.Physical review. B, Condensed matter, 54 16
R. Ma, Y. Kobayashi, W. Youngblood, T. Mallouk (2008)
Potassium niobate nanoscrolls incorporating rhodium hydroxide nanoparticles for photocatalytic hydrogen evolutionJournal of Materials Chemistry, 18
(1976)
Phys. Rev. B Acc. Chem. Res
X. Rozanska, F. Delbecq, P. Sautet (2010)
Reconstruction and stability of β-cristobalite 001, 101, and 111 surfaces during dehydroxylation.Physical chemistry chemical physics : PCCP, 12 45
S. Bonanni, K. Aït-Mansour, W. Harbich, H. Brune (2012)
Effect of the TiO2 reduction state on the catalytic CO oxidation on deposited size-selected Pt clusters.Journal of the American Chemical Society, 134 7
(2012)
J. Am. Chem. Soc
Phys. Rev. Lett
G. Kresse, D. Joubert (1999)
From ultrasoft pseudopotentials to the projector augmented-wave methodPhysical Review B, 59
G. Kresse, J. Furthmüller (1996)
Efficiency of ab-initio total energy calculations for metals and semiconductors using a plane-wave basis setComputational Materials Science, 6
Wayne Goodman (1995)
Model studies in catalysis using surface science probesChemical Reviews, 95
(2014)
Angew. Chem., Int. Ed
(2007)
Surf. Sci
Gonzalo Prieto, J. Zečević, H. Friedrich, K. Jong, P. Jongh (2013)
Towards stable catalysts by controlling collective properties of supported metal nanoparticles.Nature materials, 12 1
José Rodríguez, R. Campbell, D. Goodman (1991)
Electron donor-electron acceptor interactions in bimetallic surfaces: theory and XPS studiesThe Journal of Physical Chemistry, 95
M. Cargnello, V. Doan-Nguyen, Thomas Gordon, R. Diaz, E. Stach, R. Gorte, P. Fornasiero, C. Murray (2013)
Control of Metal Nanocrystal Size Reveals Metal-Support Interface Role for Ceria CatalystsScience, 341
Q. Fu, Fan Yang, X. Bao (2013)
Interface-confined oxide nanostructures for catalytic oxidation reactions.Accounts of chemical research, 46 8
(1996)
15−50. (34) Kresse, G.; Furthmuller
(1992)
Phys. Rev. B: Condens. Matter Mater. Phys
C. Campbell, Jason Sellers (2013)
Anchored metal nanoparticles: effects of support and size on their energy, sintering resistance and reactivity.Faraday discussions, 162
Perdew, Chevary, Vosko, Jackson, Pederson, M. Singh, Fiolhais (1992)
Atoms, molecules, solids, and surfaces: Applications of the generalized gradient approximation for exchange and correlation.Physical review. B, Condensed matter, 46 11
H. Monkhorst, J. Pack (1976)
SPECIAL POINTS FOR BRILLOUIN-ZONE INTEGRATIONSPhysical Review B, 13
M. Haruta (1997)
Size- and support-dependency in the catalysis of goldCatalysis Today, 36
J. Stuckless, Nathan Frei, C. Campbell (1998)
A novel single-crystal adsorption calorimeter and additions for determining metal adsorption and adhesion energiesReview of Scientific Instruments, 69
F. Negreiros, S. Fabris (2014)
Role of Cluster Morphology in the Dynamics and Reactivity of Subnanometer Pt Clusters Supported on Ceria SurfacesJournal of Physical Chemistry C, 118
S. Tauster (1986)
Strong metal-support interactionsAccounts of Chemical Research, 20
A. Bruix, Y. Lykhach, I. Matolínová, A. Neitzel, T. Skála, N. Tsud, M. Vorokhta, V. Stetsovych, K. Ševčíková, J. Mysliveček, R. Fiala, M. Václavů, K. Prince, S. Bruyère, V. Potin, F. Illas, V. Matolín, J. Libuda, Konstantin Neyman (2014)
Maximum noble-metal efficiency in catalytic materials: atomically dispersed surface platinum.Angewandte Chemie, 53 39
C. Campbell (2013)
The energetics of supported metal nanoparticles: relationships to sintering rates and catalytic activity.Accounts of chemical research, 46 8
L. Vilhelmsen, B. Hammer (2012)
Systematic study of Au6 to Au12 gold clusters on MgO(100) F centers using density-functional theory.Physical review letters, 108 12
Hua Wang, E. Carter (1993)
Metal-metal bonding in Engel-Brewer intermetallics: "anomalous" charge transfer in zirconium-platinum (ZrPt3)Journal of the American Chemical Society, 115
José Rodríguez, D. Goodman (1991)
Surface Science Studies of the Electronic and Chemical Properties of Bimetallic SystemsChemInform, 22
L. Brewer (1967)
A most striking confirmation of the Engel metallic correlationActa Metallurgica, 15
M. Dion, Marcel Ganne, M. Tournoux (1981)
Nouvelles familles de phases MIMII2Nb3O10 a feuillets “perovskites”Materials Research Bulletin, 16
(1988)
J. Catal
M. Haruta (2002)
Catalysis of Gold Nanoparticles Deposited on Metal OxidesCATTECH, 6
S. Tauster, S. Fung, R. Baker, John Horsley (1981)
Strong interactions in supported-metal catalysts.Science, 211 4487
Yixin Zhao, N. Vargas‐Barbosa, Megan Strayer, Nicholas McCool, M. Pandelia, Timothy Saunders, J. Swierk, Juan Callejas, L. Jensen, T. Mallouk (2015)
Understanding the Effect of Monomeric Iridium(III/IV) Aquo Complexes on the Photoelectrochemistry of IrO(x)·nH2O-Catalyzed Water-Splitting Systems.Journal of the American Chemical Society, 137 27
M. Shekhar, Jun Wang, Wen-Sheng Lee, W. Williams, Seung-Min Kim, E. Stach, Jeffrey Miller, W. Delgass, F. Ribeiro (2012)
Size and support effects for the water-gas shift catalysis over gold nanoparticles supported on model Al2O3 and TiO2.Journal of the American Chemical Society, 134 10
Z. Hu, H. Nakamura, K. Kunimori, H. Asano, T. Uchijima (1988)
Ethane hydrogenolysis and hydrogen chemisorption over niobia-promoted rhodium catalysts: A new phase by a strong rhodium-niobia interactionJournal of Catalysis, 112
J. Heitzinger, S. Gebhard, B. Koel (1992)
Chemisorption of CO on ultrathin films of Pd on Mo(100)Surface Science, 275
R. Addou, T. Senftle, Nolan O’Connor, M. Janik, A. Duin, M. Batzill (2014)
Influence of hydroxyls on Pd atom mobility and clustering on rutile TiO(2)(011)-2 × 1.ACS nano, 8 6
(2010)
J. Phys. Chem. Lett. Sautet, P. Phys. Chem. Chem. Phys
H. Hata, Y. Kobayashi, V. Bojan, W. Youngblood, T. Mallouk (2008)
Direct deposition of trivalent rhodium hydroxide nanoparticles onto a semiconducting layered calcium niobate for photocatalytic hydrogen evolution.Nano letters, 8 3
C. Campbell, S. Parker, D. Starr (2002)
The Effect of Size-Dependent Nanoparticle Energetics on Catalyst SinteringScience, 298
(2011)
J. Nat. Mater
R. Williams, J. Truesdail, H. Weinstock, Ewald Rohrmann, Carl Lyman, C. McBurney (1979)
Nutrition classics: Journal of American Chemical Society volume 60, 1939 pages 2719--2723 Pantothenic Acid. II. Its concentration and purification from liver.Nutrition reviews, 37 1
T. Hansen, A. DeLaRiva, Sivakumar Challa, A. Datye (2013)
Sintering of catalytic nanoparticles: particle migration or Ostwald ripening?Accounts of chemical research, 46 8
Yufeng Chen, Xinhua Zhao, Hui Ma, Shulan Ma, Gailing Huang, Y. Makita, X. Bai, Xiaojing Yang (2008)
Structure and dehydration of layered perovskite niobate with bilayer hydrates prepared by exfoliation/self-assembly processJournal of Solid State Chemistry, 181
R. Weast (1972)
Handbook of chemistry and physics : a readyreference book of chemical and physical data
(2013)
Acc. Chem. Res. J. R. V. Faraday Discuss
R. Campbell, Jose Rodriguez, D. Goodman (1990)
The interaction of ultrathin films of Ni and Pd with W(110): an XPS studySurface Science, 240
R. Meyer, Q. Ge, J. Lockemeyer, Randy Yeates, M. Lemanski, D. Reinalda, M. Neurock (2007)
An ab initio analysis of adsorption and diffusion of silver atoms on alumina surfacesSurface Science, 601
Megan Strayer, Jason Binz, M. Tanase, S. Shahri, Renu Sharma, R. Rioux, T. Mallouk (2014)
Interfacial bonding stabilizes rhodium and rhodium oxide nanoparticles on layered Nb oxide and Ta oxide supports.Journal of the American Chemical Society, 136 15
(1981)
136, 5687−5696. (27) Stuckless
G. Henkelman, Andri Arnaldsson, H. Jónsson (2006)
A fast and robust algorithm for Bader decomposition of charge densityComputational Materials Science, 36
P. Hansen, J. Wagner, S. Helveg, J. Rostrup-Nielsen, B. Clausen, H. Topsøe (2002)
Atom-Resolved Imaging of Dynamic Shape Changes in Supported Copper NanocrystalsScience, 295
(2002)
Acc. Chem. Res. Science
Yang‐Gang Wang, Yeohoon Yoon, V. Glezakou, Jun Li, R. Rousseau (2013)
The role of reducible oxide-metal cluster charge transfer in catalytic processes: new insights on the catalytic mechanism of CO oxidation on Au/TiO2 from ab initio molecular dynamics.Journal of the American Chemical Society, 135 29
M. Dong, Siegfried Schmauder (1998)
Comput. Mater. Sci.Computational Materials Science, 9
G. Vayssilov, Y. Lykhach, A. Migani, T. Staudt, G. Petrova, N. Tsud, T. Skála, A. Bruix, F. Illas, K. Prince, V. Matolín, Konstantin Neyman, J. Libuda (2011)
Support nanostructure boosts oxygen transfer to catalytically active platinum nanoparticles.Nature materials, 10 4
Journal of the American Chemical Society – Unpaywall
Published: Dec 10, 2015
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.