Area of research
Biomedical Engineering · Metals and Alloys
Research interest
Research interests include Advanced Materials Characterization Techniques, Hydrogen embrittlement and corrosion behaviors in metals, Ion-surface interactions and analysis, and Fusion materials and technologies.
Quantifying short-range order using atom probe tomography
New insights into the character of austenite-ferrite boundaries in an additively manufactured duplex stainless steel
Introducing C phase in additively manufactured Ti-6Al-4V: A new oxygen-stabilized face-centred cubic solid solution with improved mechanical properties
Phase transformation pathways in Ti-6Al-4V manufactured via electron beam powder bed fusion
Microstructure-property gradients in Ni-based superalloy (Inconel 738) additively manufactured via electron beam powder bed fusion
Open and strong-scaling tools for atom-probe crystallography: high-throughput methods for indexing crystal structure and orientation
High-rate superplasticity in an equiatomic medium-entropy VCoNi alloy enabled through dynamic recrystallization of a duplex microstructure of ordered phases
Solute hydrogen and deuterium observed at the near atomic scale in high-strength steel
Correlating Atom Probe Crystallographic Measurements with Transmission Kikuchi Diffraction Data
Atom Probe Tomography Analysis of Boron and/or Phosphorus Distribution in Doped Silicon Nanocrystals
Precipitation behaviors of cubic and tetragonal Zr–rich phase in Al–(Si–)Zr alloys
Role of stress-assisted martensite in the design of strong ultrafine-grained duplex steels
Atomically resolved tomography to directly inform simulations for structure–property relationships
An automated method of quantifying ferrite microstructures using electron backscatter diffraction (EBSD) data