Patrick A Burr
Affiliations: | 2007-2015 | Materials | Imperial College London, London, England, United Kingdom |
2015- | The University of New South Wales, Australia |
Area:
Materials science, nuclear engineeringWebsite:
patrickburr.comGoogle:
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Cross-listing: Materials Tree
Parents
Sign in to add mentorRobin William Grimes | grad student | 2012-2015 | Imperial College London |
Mark R Wenman | grad student | 2012-2015 | Imperial College London |
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Publications
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Jones C, Tuli V, Shah Z, et al. (2021) Evidence of hydrogen trapping at second phase particles in zirconium alloys. Scientific Reports. 11: 4370 |
Galvin COT, Grimes RW, Burr PA. (2021) A molecular dynamics method to identify the liquidus and solidus in a binary phase diagram Computational Materials Science. 186: 110016 |
Galvin C, Burr P, Cooper M, et al. (2020) Using molecular dynamics to predict the solidus and liquidus of mixed oxides (Th,U)O2, (Th,Pu)O2 and (Pu,U)O2 Journal of Nuclear Materials. 534: 152127 |
Whiting TM, Burr PA, King DJM, et al. (2019) Understanding the importance of the energetics of Mn, Ni, Cu, Si and vacancy triplet clusters in bcc Fe Journal of Applied Physics. 126: 115901 |
Burr PA, Kardoulaki E, Holmes R, et al. (2019) Defect evolution in burnable absorber candidate material: Uranium diboride, UB2 Journal of Nuclear Materials. 513: 45-55 |
King DJM, Middleburgh SC, Burr PA, et al. (2018) Density functional theory study of the magnetic moment of solute Mn in bcc Fe Physical Review B. 98 |
Lambert DS, Lennon A, Burr PA. (2018) Extrinsic Defects in Crystalline MoO3: Solubility and Effect on the Electronic Structure Journal of Physical Chemistry C. 122: 27241-27249 |
King DJM, Burr PA, Middleburgh SC, et al. (2018) The formation and structure of Fe-Mn-Ni-Si solute clusters and G-phase precipitates in steels Journal of Nuclear Materials. 505: 1-6 |
Burr PA, Cooper MWD. (2017) Importance of elastic finite-size effects: Neutral defects in ionic compounds Physical Review B. 96: 94107 |
Jackson M, Burr P, Grimes R. (2017) Defect processes in Be12X (X = Ti, Mo, V, W) Nuclear Fusion. 57: 086049 |