Area of research
Materials Chemistry · Catalysis
Research interest
Research interests include Materials science, Chemistry, Catalysis, Electrolyte, Electrode, and X-ray photoelectron spectroscopy.
Transition metal vacancy and position engineering enables reversible anionic redox reaction for sodium storage
Energizing Robust Sulfur/Lithium Electrochemistry via Nanoscale-Asymmetric-Size Synergism
Stable Metal–Organic Electrocatalysts for Anion-Exchange Membrane Water Electrolyzers by Defect Engineering
Modulating physicochemical interfaces enables li-rich oxides based ceramic solid-state li batteries under ambient conditions
Entropy-Stabilized Multication Fluorides as a Conversion-Type Cathode for Li-Ion Batteries–Impact of Element Selection
Electrochemically induced amorphous-to-rock-salt phase transformation in niobium oxide electrode for Li-ion batteries
Role of Zeolite Structural Properties toward Iodine Capture: A Head-to-head Evaluation of Framework Type and Chemical Composition
Silver-Loaded Xerogel Nanostructures for Iodine Capture: A Comparison of Thiolated versus Unthiolated Sorbents
In-situ X-ray scattering study of isotactic polypropylene/graphene nanocomposites under shear during fused deposition modeling 3D printing
(Invited) Interface Engineering in Transition-Metal Oxide Electrode Materials for Sodium Ion Batteries
Subnanometer cobalt oxide clusters as selective low temperature oxidative dehydrogenation catalysts
Simultaneous in Situ X-ray Scattering and Infrared Imaging of Polymer Extrusion in Additive Manufacturing
In Situ Time-Resolved X-ray Scattering Study of Isotactic Polypropylene in Additive Manufacturing
Instrumentation for <i>In situ/Operando</i> X-ray Scattering Studies of Polymer Additive Manufacturing Processes
Selective growth of Al2O3 on size-selected platinum clusters by atomic layer deposition
Correction to Coaxial Carbon Nanotube Supported TiO<sub>2</sub>@MoO<sub>2</sub>@Carbon Core–Shell Anode for Ultrafast and High-Capacity Sodium Ion Storage
Coaxial Carbon Nanotube Supported TiO<sub>2</sub>@MoO<sub>2</sub>@Carbon Core–Shell Anode for Ultrafast and High-Capacity Sodium Ion Storage
Gallstone-Formation-Inspired Bimetallic Supra-nanostructures for Computed-Tomography-Image-Guided Radiation Therapy
Effects of Metal Composition and Ratio on Peptide-Templated Multimetallic PdPt Nanomaterials
Strongly correlated perovskite fuel cells
Inherent Size Effects on XANES of Nanometer Metal Clusters: Size-Selected Platinum Clusters on Silica
Combining Electronic and Geometric Effects of ZnO-Promoted Pt Nanocatalysts for Aqueous Phase Reforming of 1-Propanol
A Common Single-Site Pt(II)–O(OH)<sub><i>x</i></sub>– Species Stabilized by Sodium on “Active” and “Inert” Supports Catalyzes the Water-Gas Shift Reaction
Identifying the Atomic-Level Effects of Metal Composition on the Structure and Catalytic Activity of Peptide-Templated Materials
Erbium(III) Coordination at the Surface of an Aqueous Electrolyte
Catalytically active Au-O(OH) <i> <sub>x</sub> </i> - species stabilized by alkali ions on zeolites and mesoporous oxides