Donald W. Brenner

Affiliations: 
North Carolina State University, Raleigh, NC 
Area:
Materials Science Engineering, Molecular Physics
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"Donald Brenner"
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Children

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Denis A. Areshkin grad student 2002 NCSU
Yanxin Li grad student 2002 NCSU
Shashishekar P. Adiga grad student 2004 NCSU
Mark K. Behbehani grad student 2004 NCSU
Yojna Purohit grad student 2008 NCSU
Zushou Hu grad student 2009 NCSU
Natalie M. Gibson grad student 2010 NCSU
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Publications

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Rost CM, Borman T, Hossain MD, et al. (2020) Electron and phonon thermal conductivity in high entropy carbides with variable carbon content Acta Materialia. 196: 231-239
Lim M, Rak Z, Braun JL, et al. (2019) Influence of mass and charge disorder on the phonon thermal conductivity of entropy stabilized oxides determined by molecular dynamics simulations Journal of Applied Physics. 125: 055105
Harrington TJ, Gild J, Sarker P, et al. (2019) Phase stability and mechanical properties of novel high entropy transition metal carbides Acta Materialia. 166: 271-280
Sarker P, Harrington T, Toher C, et al. (2018) High-entropy high-hardness metal carbides discovered by entropy descriptors. Nature Communications. 9: 4980
Su L, Krim J, Brenner DW. (2018) The Interdependent Roles of Electrostatics and Surface Functionalization on the Adhesion Strengths of Nanodiamonds to Gold in Aqueous Environments Revealed by Molecular Dynamics Simulations. The Journal of Physical Chemistry Letters
Li D, Bucholz EW, Peterson G, et al. (2017) How predictable is plastic damage at the atomic scale? Applied Physics Letters. 110: 091902
Li D, Reich B, Brenner D. (2017) Statistical and image analysis for characterizing simulated atomic-scale damage in crystals Computational Materials Science. 135: 119-126
Peterson GCL, Li D, Reich BJ, et al. (2016) Spatial prediction of crystalline defects observed in molecular dynamic simulations of plastic damage Journal of Applied Statistics. 1-24
Brenner DW, Shenderova OA. (2015) Theory and modelling of diamond fracture from an atomic perspective. Philosophical Transactions. Series a, Mathematical, Physical, and Engineering Sciences. 373
Brenner DW, Lu S, O'Brien CJ, et al. (2015) A particle assembly/constrained expansion (PACE) model for the formation and structure of porous metal oxide deposits on nuclear fuel rods in pressurized light water reactors Journal of Nuclear Materials. 457: 209-212
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