Area of research
Materials Chemistry · Catalysis
Research interest
Research interests include Catalysis, Materials science, Cluster (spacecraft), Chemistry, XANES, and Copper.
CO<sub>2</sub> Methanation on Cu-Cluster Decorated Zirconia Supports with Different Morphology: A Combined Experimental In Situ GIXANES/GISAXS, Ex Situ XPS and Theoretical DFT Study
Probing Active Sites in Cu<sub><i>x</i></sub>Pd<sub><i>y</i></sub> Cluster Catalysts by Machine-Learning-Assisted X-ray Absorption Spectroscopy
Interpreting the Operando XANES of Surface-Supported Subnanometer Clusters: When Fluxionality, Oxidation State, and Size Effect Fight
Mapping XANES spectra on structural descriptors of copper oxide clusters using supervised machine learning
Subnanometer cobalt oxide clusters as selective low temperature oxidative dehydrogenation catalysts
Oxidative Dehydrogenation of Cyclohexane by Cu <i>vs</i> Pd Clusters: Selectivity Control by Specific Cluster Dynamics
Dynamic Interplay between Copper Tetramers and Iron Oxide Boosting CO<sub>2</sub> Conversion to Methanol and Hydrocarbons under Mild Conditions
<i>In Situ</i> Formed Ir<sub>3</sub>Li Nanoparticles as Active Cathode Material in Li–Oxygen Batteries
Simple size-controlled synthesis of Au nanoparticles and their size-dependent catalytic activity
Perspective: Size selected clusters for catalysis and electrochemistry
Subnanometer Substructures in Nanoassemblies Formed from Clusters under a Reactive Atmosphere Revealed Using Machine Learning
Bimetallic Ag‐Pt Sub‐nanometer Supported Clusters as Highly Efficient and Robust Oxidation Catalysts
Highly efficient Cu-decorated iron oxide nanocatalyst for low pressure CO2 conversion
Electrochemical behaviour of naked sub-nanometre sized copper clusters and effect of CO<sub>2</sub>