Area of research
Electrical and Electronic Engineering · Materials Chemistry
Research interest
Research interests include XANES, Materials science, Catalysis, Membrane, Cluster (spacecraft), and Chemistry.
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
Transport and Morphology of a Proton Exchange Membrane Based on a Doubly Functionalized Perfluorosulfonic Imide Side Chain Perflourinated Polymer
Dynamic Interplay between Copper Tetramers and Iron Oxide Boosting CO<sub>2</sub> Conversion to Methanol and Hydrocarbons under Mild Conditions
Selective growth of Al2O3 on size-selected platinum clusters by atomic layer deposition
Subnanometer Substructures in Nanoassemblies Formed from Clusters under a Reactive Atmosphere Revealed Using Machine Learning
Highly efficient Cu-decorated iron oxide nanocatalyst for low pressure CO2 conversion
The formation of CdS quantum dots and Au nanoparticles
Inherent Size Effects on XANES of Nanometer Metal Clusters: Size-Selected Platinum Clusters on Silica
A Highly Hydroxide Conductive, Chemically Stable Anion Exchange Membrane, Poly(2,6 dimethyl 1,4 phenylene oxide)-<i>b</i>-Poly(vinyl benzyl trimethyl ammonium), for Electrochemical Applications
Toward a modular multi-material nanoparticle synthesis and assembly strategy via bionanocombinatorics: bifunctional peptides for linking Au and Ag nanomaterials
Atomic-scale identification of Pd leaching in nanoparticle catalyzed C–C coupling: effects of particle surface disorder
Interplay between water uptake, ion interactions, and conductivity in an e-beam grafted poly(ethylene-co-tetrafluoroethylene) anion exchange membrane
Peptide-Modified Dendrimers as Templates for the Production of Highly Reactive Catalytic Nanomaterials