Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 60 checked references that resolve
resolves10.1021/ar300361mSingle-Atom Catalysts: A New Frontier in Heterogeneous Catalysis
resolves10.1038/nature07194Selective oxidation with dioxygen by gold nanoparticle catalysts derived from 55-atom clusters
resolves10.1016/j.cattod.2010.08.022Size-dependent selectivity and activity of silver nanoclusters in the partial oxidation of propylene to propylene oxide and acrolein: A joint experimental and theoretical study
resolves10.1002/anie.200502101Catalysis by Gold: Isolated Surface Au<sup>3+</sup> Ions are Active Sites for Selective Hydrogenation of 1,3‐Butadiene over Au/ZrO<sub>2</sub> Catalysts
resolves10.1007/s10562-008-9637-8Influence of Particle Size on Reaction Selectivity in Cyclohexene Hydrogenation and Dehydrogenation over Silica-Supported Monodisperse Pt Particles
resolves10.1021/ja805050cStructure Sensitivity of Carbon−Nitrogen Ring Opening: Impact of Platinum Particle Size from below 1 to 5 nm upon Pyrrole Hydrogenation Product Selectivity over Monodisperse Platinum Nanoparticles Loaded onto Mesoporous Silica
resolves10.1021/cs500740uSupported Single Pt<sub>1</sub>/Au<sub>1</sub> Atoms for Methanol Steam Reforming
resolves10.1126/science.aao2109Activation of surface lattice oxygen in single-atom Pt/CeO
<sub>2</sub>
for low-temperature CO oxidation
resolves10.1007/s12274-015-0796-9Ultrastable single-atom gold catalysts with strong covalent metal-support interaction (CMSI)
resolves10.1021/jp503769dTheoretical and Experimental Investigations on Single-Atom Catalysis: Ir<sub>1</sub>/FeO<sub><i>x</i></sub> for CO Oxidation
resolves10.1021/ja408574mRemarkable Performance of Ir<sub>1</sub>/FeO<sub><i>x</i></sub> Single-Atom Catalyst in Water Gas Shift Reaction
resolves10.1021/acscatal.6b00822CO<sub>2</sub> Activation on Ni/γ–Al<sub>2</sub>O<sub>3</sub> Catalysts by First-Principles Calculations: From Ideal Surfaces to Supported Nanoparticles
resolves10.1021/jacs.6b06939Recycling of CO<sub>2</sub>: Probing the Chemical State of the Ni(111) Surface during the Methanation Reaction with Ambient-Pressure X-Ray Photoelectron Spectroscopy
resolves10.1021/jacs.5b13366Reverse Water–Gas Shift or Sabatier Methanation on Ni(110)? Stable Surface Species at Near-Ambient Pressure
resolves10.1002/cctc.201300699Stable Performance of Ni Catalysts in the Dry Reforming of Methane at High Temperatures for the Efficient Conversion of CO<sub>2</sub> into Syngas
resolves10.1016/j.cattod.2004.01.003Syngas production from methane reforming with CO2/H2O and O2 over NiO–MgO solid solution catalyst in fluidized bed reactors
resolves10.1021/acscatal.8b02277Dry Reforming of Methane on Single-Site Ni/MgO Catalysts: Importance of Site Confinement
resolves10.1039/C5CY00667HMethanation of CO
<sub>2</sub>
and reverse water gas shift reactions on Ni/SiO
<sub>2</sub>
catalysts: the influence of particle size on selectivity and reaction pathway
resolves10.1016/j.materresbull.2014.01.043Preparation of mesoporous CeO2 and monodispersed NiO particles in CeO2, and enhanced selectivity of NiO/CeO2 for reverse water gas shift reaction
resolves10.1021/acscatal.7b02310Size-Tunable Ni Nanoparticles Supported on Surface-Modified, Cage-Type Mesoporous Silica as Highly Active Catalysts for CO<sub>2</sub> Hydrogenation
resolves10.1002/anie.201507381Nanoporous Graphene with Single‐Atom Nickel Dopants: An Efficient and Stable Catalyst for Electrochemical Hydrogen Production
resolves10.1021/jacs.7b02736Ionic Exchange of Metal–Organic Frameworks to Access Single Nickel Sites for Efficient Electroreduction of CO<sub>2</sub>
resolves10.1038/s41929-017-0008-yGeneral synthesis and definitive structural identification of MN4C4 single-atom catalysts with tunable electrocatalytic activities
resolves10.1016/j.apcatb.2017.02.081Selective hydrogenation of CO2 into CO on a highly dispersed nickel catalyst obtained by magnetron sputtering deposition: A step towards liquid fuels
resolves10.1088/0953-8984/7/48/023X-ray absorption spectroscopy study of Ni<sub>c</sub>Mg<sub>1-c</sub>O solid solutions on the Ni K edge
resolves10.1039/c2cp42767bUnderstanding CeO2 as a Deacon catalyst by probe molecule adsorption and in situ infrared characterisations
resolves10.1021/acs.jpcc.6b09505Ni Substitutional Defects in Bulk and at the (001) Surface of MgO from First-Principles Calculations
resolves10.1039/C3RA46569AHighly active and stable nano NiO–MgO catalyst encapsulated by silica with a core–shell structure for CO
<sub>2</sub>
methanation
resolves10.1007/s10562-015-1638-9NiO–MgO Solid Solution Prepared by Sol–Gel Method as Precursor for Ni/MgO Methane Dry Reforming Catalyst: Effect of Calcination Temperature on Catalytic Performance
resolves10.1039/FT9908602663Temperature-programmed reduction study of NiO–MgO interactions in magnesia-supported Ni catalysts and NiO–MgO physical mixture
resolves10.1021/jp512962cMechanistic Insights into CO<sub>2</sub> Activation via Reverse Water–Gas Shift on Metal Surfaces
resolves10.1021/ja00251a025FT-IR study of the adsorption and transformation of formaldehyde on oxide surfaces
resolves10.1016/0390-6035(82)90059-1Infrared spectroscopic identification of species arising from reactive adsorption of carbon oxides on metal oxide surfaces
resolves10.1039/C6CP08504KInitial stages of CO
<sub>2</sub>
adsorption on CaO: a combined experimental and computational study
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