The Power of Single‐Atom Catalysis
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- Type
- article
- Published
- 2015-09-01
- Cited by
- 309
- References
- 78
- OpenAlex
- https://openalex.org/W1873395993
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94105548
Keywords
Catalysis, Nanotechnology, Atom (system on chip), Characterization (materials science), Atom economy
References
- Coordinatively Unsaturated Al3+ Centers as Binding Sites for Active Catalyst Phases of Platinum on γ-Al2O3
- Ab Initio Density Functional Calculations of Adsorption of Transition Metal Atoms on θ-Al2O3(010) Surface
- Alkane activation by a highly electrophilic zirconium hydride complex supported on silica
- Gold atoms stabilized on various supports catalyze the water-gas shift reaction.
- Single-atom catalysts: a new frontier in heterogeneous catalysis.
- Can a Single Atom Serve as the Active Site in Some Heterogeneous Catalysts?
- Methane complete and partial oxidation catalyzed by Pt-doped CeO2
- A common single-site Pt(II)-O(OH)x- species stabilized by sodium on "active" and "inert" supports catalyzes the water-gas shift reaction.
- Alkane metathesis with the tantalum methylidene [(≡SiO)Ta(═CH2)Me2]/[(≡SiO)2Ta(═CH2)Me] generated from well-defined surface organometallic complex [(≡SiO)Ta(V)Me4].
- Reaction-induced cluster ripening and initial size-dependent reaction rates for CO oxidation on Pt(n)/TiO2(110)-(1×1).
- Catalytically active Au-O(OH)x- species stabilized by alkali ions on zeolites and mesoporous oxides
- Active Nonmetallic Au and Pt Species on Ceria-Based Water-Gas Shift Catalysts
- CO Catalytic Oxidation on Iron-Embedded Graphene: Computational Quest for Low-Cost Nanocatalysts
- Reactions of Tetraalkylchromium(IV) with Silica: Mechanism of Grafting and Characterization of Surface Organometallic Complexes
- Homogeneous and heterogeneous catalysis: bridging the gap through surface organometallic chemistry.
- Acetylene cyclotrimerization on supported size-selected Pd-n clusters (1 <= n <= 30): one atom is enough!
- Surface Organometallic Chemistry of Inorganic Oxides: The Synthesis and Characterization of (.tplbond.SiO)Ta(:CHC(CH3)3)(CH2C(CH3)3)2 and (.tplbond.SiO)2Ta(:CHC(CH3)3)(CH2C(CH3)3)
- FeOx-supported platinum single-atom and pseudo-single-atom catalysts for chemoselective hydrogenation of functionalized nitroarenes
- Dumbbell-like Pt-Fe3O4 nanoparticles and their enhanced catalysis for oxygen reduction reaction.
- Catalytically highly active top gold atom on palladium nanocluster.
Cited by
- Synthetic Access to Atomically Dispersed Metals in Metal-Organic Frameworks via a Combined Atomic-Layer-Deposition-in-MOF and Metal-Exchange Approach
- High Catalytic Activity and Chemoselectivity of Sub-nanometric Pd Clusters on Porous Nanorods of CeO2 for Hydrogenation of Nitroarenes.
- Rational control of nano-scale metal-catalysts for biomass conversion.
- Adsorption of a single gold or silver atom on vanadium oxide clusters.
- Thermal Stabilization of Metal-Organic Framework-Derived Single-Site Catalytic Clusters through Nanocasting.
- Single Atom Excels as the Smallest Functional Material
- Real‐space observation of strong metal‐support interaction: state‐of‐the‐art and what's the next
- 3d transition metal embedded C2N monolayers as promising single-atom catalysts: A first-principles study
- The reaction mechanism for the SCR process on monomer V(5+) sites and the effect of modified Brønsted acidity.
- Influence of Carbon Support on Electronic Structure and Catalytic Activity of Pt Catalysts: Binding to the CO Molecule
- Stabilizing a Platinum1 Single-Atom Catalyst on Supported Phosphomolybdic Acid without Compromising Hydrogenation Activity.
- ZrO2 Is Preferred over TiO2 as Support for the Ru-Catalyzed Hydrogenation of Levulinic Acid to γ-Valerolactone
- On the Nature of Support Effects of Metal Dioxides MO2 (M = Ti, Zr, Hf, Ce, Th) in Single-Atom Gold Catalysts: Importance of Quantum Primogenic Effect
- High-Performance Ru1 /CeO2 Single-Atom Catalyst for CO Oxidation: A Computational Exploration.
- Iron-embedded C2N monolayer: a promising low-cost and high-activity single-atom catalyst for CO oxidation.
- Single-atom catalysts for CO2 electroreduction with significant activity and selectivity improvements
- Catalysis and Nuclear Magnetic Resonance Signal Enhancement with Parahydrogen
- Efficient CO Oxidation Using Dendrimer-Encapsulated Pt Nanoparticles Activated with <2% Cu Surface Atoms.
- Palladium nanoparticles supported on graphene sheets incorporating boron oxides (BxOy) for enhanced formic acid oxidation
- Support Effects in Single-Atom Platinum Catalysts for Electrochemical Oxygen Reduction
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