Jonathan D. Poplawsky, Ph.D.

Affiliations: 
2012 Physics Lehigh University, Bethlehem, PA, United States 
Area:
General Physics
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"Jonathan Poplawsky"
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Parents

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Volkmar Dierolf grad student 2012 Lehigh University
 (Studies of Excitation Mechanisms in Europium Doped Gallium Nitride under Simultaneous Electron Beam and Laser Excitations.)
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Publications

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Wang X, Hatzoglou C, Sneed B, et al. (2020) Interpreting nanovoids in atom probe tomography data for accurate local compositional measurements. Nature Communications. 11: 1022
Poplawsky JD, Dutta P, Guthrey HL, et al. (2020) Directly Linking Low Angle Grain Boundary Misorientation to Device Functionality for GaAs Grown on Flexible Metal Substrates. Acs Applied Materials & Interfaces
Mitchell B, Timmerman D, Zhu W, et al. (2020) Direct detection of rare earth ion distributions in gallium nitride and its influence on growth morphology Journal of Applied Physics. 127: 013102
Aydogan E, Gigax JG, Parker SS, et al. (2020) Nitrogen effects on radiation response in 12Cr ferritic/martensitic alloys Scripta Materialia. 189: 145-150
Detrois M, Pei Z, Rozman KA, et al. (2020) Partitioning of tramp elements Cu and Si in a Ni-based superalloy and their effect on creep properties Materialia. 13: 100843
Liu X, Gigax JG, Poplawsky JD, et al. (2020) Radiation response of a Fe–20Cr–25Ni austenitic stainless steel under Fe2+ irradiation at 500 °C Materialia. 9: 100542
Yang Y, Samolyuk GD, Chen T, et al. (2020) Coupling computational thermodynamics with density-function-theory based calculations to design L12 precipitates in Fe Ni based alloys Materials & Design. 191: 108592
De-Castro D, Rementeria R, Vivas J, et al. (2020) Examining the multi-scale complexity and the crystallographic hierarchy of isothermally treated bainitic and martensitic structures Materials Characterization. 160: 110127
Chen J, Xiao J, Poplawsky J, et al. (2020) The origin of passivity in aluminum-manganese solid solutions Corrosion Science. 173: 108749
Poplawsky JD, Milligan BK, Allard LF, et al. (2020) The synergistic role of Mn and Zr/Ti in producing θ′/L12 co-precipitates in Al-Cu alloys Acta Materialia. 194: 577-586
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