Well-characterized metal oxides supported on single crystal surfaces serve as valuable model systems to study fundamental chemical properties and reaction mechanisms in heterogeneous catalysis or as new thin film metal oxide catalysts in their own right. Here, we present scanning tunneling microscopy and X-ray photoelectron spectroscopy results for cobalt oxide nanoislands that reveal the detailed atomistic mechanisms leading to transitions between Co–O bilayer and O–Co–O trilayer, induced by oxidation in O<sub>2</sub> and reductive vacuum annealing treatments, respectively. By comparing between two different noble metal substrates, Au(111) and Pt(111), we further address the influence of the substrate. Overall, nanoisland edges act to init...
© 2019 The Royal Society of Chemistry.The strong metal-oxide interaction of platinum nanoparticles (...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
Cobalt oxide is a promising earth abundant electrocatalyst and one of the most intensively studied o...
Layered cobalt oxides have been shown to be highly active catalysts for the oxygen evolution reactio...
Ultrathin (“monolayer”) films of transition metal oxides grown on metal substrates have recently rec...
Ultrathin (“monolayer”) films of transition metal oxides grown on metal substrates have recently rec...
Noble metals supported on reducible oxides, like CoOx and TiOx, exhibit superior activity in many ch...
Cobalt oxide is a promising earth-abundant electrocatalyst for water splitting; however, the structu...
Very active FeO<sub><i>x</i></sub>–Au catalysts for CO oxidation are obtained after depositing nanop...
Bimetallic catalysts are widely used in many heterogeneous catalytic processes. With rational design...
Ultrathin (monolayer) films of transition metal oxides grown on metal substrates have recently recei...
Ultrathin (monolayer) films of transition metal oxides grown on metal substrates have recently recei...
International audienceCobalt surface oxides grown on Pt(111) by depositing Co and dosing with molecu...
© The formation of metal-oxide interfaces in catalytic systems exhibits a synergistic phenomenon bet...
Identification of the active sites in heterogeneous catalysis is important for a mechanistic underst...
© 2019 The Royal Society of Chemistry.The strong metal-oxide interaction of platinum nanoparticles (...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
Cobalt oxide is a promising earth abundant electrocatalyst and one of the most intensively studied o...
Layered cobalt oxides have been shown to be highly active catalysts for the oxygen evolution reactio...
Ultrathin (“monolayer”) films of transition metal oxides grown on metal substrates have recently rec...
Ultrathin (“monolayer”) films of transition metal oxides grown on metal substrates have recently rec...
Noble metals supported on reducible oxides, like CoOx and TiOx, exhibit superior activity in many ch...
Cobalt oxide is a promising earth-abundant electrocatalyst for water splitting; however, the structu...
Very active FeO<sub><i>x</i></sub>–Au catalysts for CO oxidation are obtained after depositing nanop...
Bimetallic catalysts are widely used in many heterogeneous catalytic processes. With rational design...
Ultrathin (monolayer) films of transition metal oxides grown on metal substrates have recently recei...
Ultrathin (monolayer) films of transition metal oxides grown on metal substrates have recently recei...
International audienceCobalt surface oxides grown on Pt(111) by depositing Co and dosing with molecu...
© The formation of metal-oxide interfaces in catalytic systems exhibits a synergistic phenomenon bet...
Identification of the active sites in heterogeneous catalysis is important for a mechanistic underst...
© 2019 The Royal Society of Chemistry.The strong metal-oxide interaction of platinum nanoparticles (...
Abstract: CO oxidation, as one of the simplest catalytic reactions, has been widely studied in heter...
Cobalt oxide is a promising earth abundant electrocatalyst and one of the most intensively studied o...