Dose rate dependent cation & anion radiation enhanced diffusion in hematite
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B. Uberuaga | Yongqiang Wang | Sandra D. Taylor | D. Schreiber | K. Yano | A. Kohnert | T. Kaspar | S. Spurgeon | Hyosim Kim
[1] B. Uberuaga,et al. Adatom-Driven Oxygen Intermixing during the Deposition of Oxide Thin Films by Molecular Beam Epitaxy. , 2022, Nano letters.
[2] B. Uberuaga,et al. Radiation Enhanced Anion Diffusion in Chromia , 2021, The Journal of Physical Chemistry C.
[3] B. Uberuaga,et al. Effects of Radiation-Induced Defects on Corrosion , 2021 .
[4] Edward F. Holby,et al. Radiation-Enhanced Anion Transport in Hematite , 2021 .
[5] T. Lach,et al. Bulk and Short‐Circuit Anion Diffusion in Epitaxial Fe2O3 Films Quantified Using Buried Isotopic Tracer Layers , 2021, Advanced Materials Interfaces.
[6] B. Uberuaga,et al. Critical Assessment of the Thermodynamics of Vacancy Formation in Fe2O3 Using Hybrid Density Functional Theory , 2020 .
[7] Yuanyuan Zhu,et al. Towards bend-contour-free dislocation imaging via diffraction contrast STEM. , 2018, Ultramicroscopy.
[8] J. Svensson,et al. Determination of the oxide scale growth mechanism using 18O-tracer experiments in combination with Transmission Electron Microscopy and nanoscale Secondary Ion Mass Spectrometry , 2018 .
[9] S. Zinkle,et al. Opportunities and limitations for ion beams in radiation effects studies: Bridging critical gaps between charged particle and neutron irradiations , 2018 .
[10] B. Doyle,et al. In Situ TEM Multi-Beam Ion Irradiation as a Technique for Elucidating Synergistic Radiation Effects , 2017, Materials.
[11] B. Pint,et al. Design and Evaluation of Nuclear System for ARIES-ACT2 Power Plant with DCLL Blanket , 2017 .
[12] Y. Wang,et al. Degradation of HT9 under simultaneous ion beam irradiation and liquid metal corrosion , 2016 .
[13] B. Wirth,et al. Modeling defect cluster evolution in irradiated structural materials: Focus on comparing to high-resolution experimental characterization studies , 2015 .
[14] R. Stoller,et al. On the use of SRIM for computing radiation damage exposure , 2013 .
[15] Baptiste Gault,et al. Qualification of the tomographic reconstruction in atom probe by advanced spatial distribution map techniques. , 2009, Ultramicroscopy.
[16] W. Quadakkers,et al. Growth and adherence of chromia based surface scales on Ni-base alloys in high- and low-pO2 gases , 2008 .
[17] D Lawrence,et al. In situ site-specific specimen preparation for atom probe tomography. , 2007, Ultramicroscopy.
[18] A. Sabioni,et al. Measurement of iron self-diffusion in hematite single crystals by secondary ion-mass spectrometry (SIMS) and comparison with cation self-diffusion in corundum-structure oxides , 2005 .
[19] F. Jomard,et al. Diffusion of iron in Cr2O3: polycrystals and thin films , 2005 .
[20] A. Huntz,et al. Growth mechanism of Cr2O3 scales: oxygen and chromium diffusion, oxidation kinetics and effect of yttrium , 1996 .
[21] T. D. Rubia,et al. Molecular dynamics computer simulations of displacement cascades in metals , 1994 .
[22] C. Monty,et al. Self-diffusion in cr2o3 I. Chromium diffusion in single crystals , 1992 .
[23] C. Monty,et al. Self-diffusion in cr2o3 II. Oxygen diffusion in single crystals , 1992 .
[24] M. Heilmaier,et al. Determination of the grain boundary diffusion coefficient of oxygen in Cr2O3 , 1988 .
[25] J. Stringer. Performance limitations in electric power generating systems imposed by high temperature corrosion , 1985 .
[26] A. R. Cooper,et al. Oxygen diffusion in MgO and α-Fe2O3 , 1983 .
[27] F. Pettit,et al. High temperature corrosion in energy systems , 1981 .
[28] R. Dieckmann,et al. Defects and Cation Diffusion in Magnetite (I) , 1977 .
[29] J. Castle,et al. Self-diffusion of oxygen in magnetite. Effect of anion vacancy concentration and cation distribution , 1969 .
[30] J. Castle,et al. Self-diffusion of oxygen in magnetite. Techniques for sampling and isootopic analysis of micro quantities of water , 1967 .
[31] W. C. Hagel. Anion Diffusion in α‐Cr2O3 , 1965 .
[32] D. C. Hill,et al. Oxygen Mobility in Polycrystalline NiCr2O4 and α‐Fe2O3 , 1960 .
[33] N. L. Peterson,et al. Cation self-diffusion and impurity diffusion in Fe2O3+ , 1985 .
[34] R. I. Taylor,et al. Diffusion of 55Fe in Fe2O3 single crystals , 1985 .
[35] J. Stiegler,et al. Radiation Effects in Structural Materials , 1979 .