Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Fuel Cells and Related Materials, Electrocatalysts for Energy Conversion, Hybrid Renewable Energy Systems, and Electron and X-Ray Spectroscopy Techniques.
Predicting PEMFC performance from a volumetric image of catalyst layer structure using pore network modeling
The exit-wave power-cepstrum transform for scanning nanobeam electron diffraction: robust strain mapping at subnanometer resolution and subpicometer precision
Mitigation of PEM Fuel Cell Catalyst Degradation with Porous Carbon Supports
Real-time imaging of activation and degradation of carbon supported octahedral Pt–Ni alloy fuel cell catalysts at the nanoscale using<i>in situ</i>electrochemical liquid cell STEM
Revealing the atomic ordering of binary intermetallics using in situ heating techniques at multilength scales
Highly conductive and chemically stable alkaline anion exchange membranes via ROMP of <i>trans</i> -cyclooctene derivatives
Pt-Rich<sub>core</sub>/Sn-Rich<sub>subsurface</sub>/Pt<sub>skin</sub> Nanocubes As Highly Active and Stable Electrocatalysts for the Ethanol Oxidation Reaction
Editors' Choice—Connecting Fuel Cell Catalyst Nanostructure and Accessibility Using Quantitative Cryo-STEM Tomography
Tuning the Electrocatalytic Oxygen Reduction Reaction Activity and Stability of Shape-Controlled Pt–Ni Nanoparticles by Thermal Annealing − Elucidating the Surface Atomic Structural and Compositional Changes
Atomically engineered ferroic layers yield a room-temperature magnetoelectric multiferroic
Nanomaterial datasets to advance tomography in scanning transmission electron microscopy
Multicomponent Nanomaterials with Complex Networked Architectures from Orthogonal Degradation and Binary Metal Backfilling in ABC Triblock Terpolymers