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In Situ Grain Growth of Nanograined Magnetite under Ion Irradiation at Room Temperature and 500 ℃

Published online by Cambridge University Press:  30 July 2021

Chris McRobie
Affiliation:
North Carolina State University, United States
Ryan Schoell
Affiliation:
North Carolina State University, United States
Tiffany Kaspar
Affiliation:
Pacific Northwest National Laboratory, United States
Daniel Schreiber
Affiliation:
Pacific Northwest National Laboratory, United States
Djamel Kaoumi
Affiliation:
North Carolina State University, United States

Abstract

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Type
Evaluation of Materials for Nuclear Applications
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the Microscopy Society of America

References

ALEXANDER, D., WAS, G., “Thermal-spike Treatment of Ion-induced Grain Growth: Theory and Experimental Comparison,” Phys. Rev., 47, 2983 (1993)Google ScholarPubMed
KAOUMI, D., MOTTA, A., and BIRTCHER, R., “Grain Growth in Nanocrystalline Metal Thin Films under In Situ Ion-Beam Irradiation,” Journal of ASTM, 4, 1 (2007)Google Scholar
DARGATZ, B., GONZALEZ-JULIAN, J., BRAM, M., SHINODA, Y., and WAKAI, F., Guillon, O., “FAST.PS Sintering of Nanocrystalline Zinc Oxide Part II: Abnormal Grain Growth, Texture and Grain Anisotropy,” Journal of the European Ceramic Society, 36, 1221 (2016)CrossRefGoogle Scholar
MOHANTY, T., DHOUNSI, S., KUMAR, P., TRIPATHI, A., KANJILAL, D., “250 keV Ar2+ ion beam induced grain growth in tin oxide thin films”, Surface and Coatings Technology, 203, 2410 (2009)CrossRefGoogle Scholar
AIDHY, D., ZHANG, Y., and WEBER, W., “A Fast Grain-Growth Mechanism Revealed in Nanocrystalline Ceramic Oxides,” Scripta Materialia, 83, 9 (2014)CrossRefGoogle Scholar
SHUKLA, S, SEAL, S, VIJ, R, BANDYOPADHYAY, S. Nanoletters 2003;3:397.CrossRefGoogle Scholar
SHEK, CH, LAI, JKL, LIN, GM. Nanostructured Materials 1999;11:887.CrossRefGoogle Scholar
ZHANG, Y., EDMONDSON, P., VARGA, T., MOLL, S., NAMAVAR, F., LAN, C., and WEBER, W., “Structural Modification of Nanocrystalline Ceria by Ion Beam,” Physical Chemistry Chemical Physics, 13, 11946 (2011)CrossRefGoogle Scholar
ZHANG, Y., JIANG, W., WANG, C., NAMAVAR, F., EDMONDSON, P., ZHU, Z., GAO, F., LIAN, J., and WEBER, W., “Grain Growth and Phase Stability of Nanocrystalline Cubic Zirconia under Ion Irradiation”, Phys. Rev B., 82, 184105 (2010)CrossRefGoogle Scholar
KAOUMI, D., MOTTA, A., and BIRTCHER, R., “A Thermal Spike Model of Grain Growth under Irradiation,” Journal of Applied Physics, 104, 073525 (2008)Google Scholar