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Low temperature deformation kinetics of ruthenium aluminide alloys. MRS Proceedings. 552:KK7–11.. 1998.
Low temperature deformation and dislocation substructure of ruthenium aluminide polycrystals. Acta materialia. 47:1035–1042.. 1999.
Transmission electron microscopy study of complex planar faults in Ru–Al–0.5 at.% B. Philosophical Magazine. 84:2317–2329.. 2004.
In situ imaging of high cycle fatigue crack growth in single crystal nickel-base superalloys by synchrotron X-radiation. Journal of Engineering Materials and Technology. 130:021008.. 2008.
In-plane and out-of-plane deformation at the sub-grain scale in polycrystalline materials assessed by confocal microscopy. Acta Materialia. 169:260–274.. 2019.
In situ synchrotron X-ray imaging of high-cycle fatigue crack propagation in single-crystal nickel-base alloys. Acta Materialia. 59:5103–5115.. 2011.
On the effect of low and high pressure hydrogen charging on the oxidation of a Ti–48Al–2Cr–2Nb alloy. Materials Science and Engineering: A. 318:224–234.. 2001.
A new phase in hydrogen-charged Ti 48Al 2Cr 2Nb. Scripta metallurgica et materialia. 32:1009–1014.. 1995.
Tuning the magnetocaloric response in half-Heusler/Heusler MnNi1 xSb solid solutions. Physical Review Materials. 1. 2017.
Structural coupling and magnetic tuning in Mn₂₋ₓCoₓP magnetocalorics for thermomagnetic power generation. APL Materials. 8:041106.. 2020.
Enhancing thermoelectric properties through control of Nickel Interstitials and phase separation in Heusler/Half-Heusler TiNi1.1Sn composites. Materials. 11:1–12.. 2018.
Protocols for High Temperature Assisted-Microwave Preparation of Inorganic Compounds. Chemistry of Materials. 31:7151–7159.. 2019.
Influence of plastic deformation on the magnetic properties of Heusler MnAu2Al. Phys. Rev. Materials. 5. 2021.
Grain size effects on NiTi shape memory alloy fatigue crack growth. Journal of Materials Research. 33:91–107.. 2018.
Twin related domain networks in René 88DT. Materials Characterization. 165:110365.. 2020.
Advanced detector signal acquisition and electron beam scanning for high resolution SEM imaging. Ultramicroscopy. 195:93–100.. 2018.
Quantitative Analysis of Correlated 3D Strontium Titanate Datasets Collected by TriBeam and Diffraction Contrast Tomography. Microscopy and Microanalysis. 21:2043–2044.. 2015.
Quantitative voxel-to-voxel comparison of TriBeam and DCT strontium titanate three-dimensional data sets. Journal of Applied Crystallography. 48:1034–1046.. 2015.
Prediction of Fatigue-Initiating Twin Boundaries in Polycrystalline Nickel Superalloys Informed by TriBeam Tomography. Microscopy and Microanalysis. 22:1732–1733.. 2016.
Outcomes from research collaborations: What are they and how long do they take? MRS bulletin. 38:526–528.. 2013.
Computational homogenization for multiscale forward modeling of resonant ultrasound spectroscopy of heterogeneous materials. Materials Characterization. 158:109945.. 2019.
Insight into microstructure-sensitive elastic strain concentrations from integrated computational modeling and digital image correlation. Scripta Materialia. 192:78–82.. 2021.
Application of chord length distributions and principal component analysis for quantification and representation of diverse polycrystalline microstructures. Materials Characterization. 145:671–685.. 2018.
BisQue for 3D Materials Science in the Cloud: Microstructure–Property Linkages. Integrating Materials and Manufacturing Innovation. 8:52–65.. 2019.
Oxidation-Assisted Crack Growth in Single-Crystal Superalloys during Fatigue with Compressive Holds. Metallurgical and Materials Transactions A. 49:105–116.. 2018.