Username: mbaskes Title: Prof. First Name: Michael Last Name: Baskes Published Name: Michael I. Baskes OpenKIM User ID: 05936d64-2312-402a-9873-5b6799e9f6db Email: baskes@bagley.msstate.edu Institution: Mississippi State University Department: Aerospace Engineering Country: US Website: https://www.ae.msstate.edu/people/faculty/michael-baskes Biography: Dr. Baskes obtained his B.S. degree at Caltech in 1965 in engineering and received his Ph.D. in 1970 at Caltech in Materials Science. He was then employed at Sandia National Laboratories, Livermore, Los Alamos National Laboratory, the University of California, San Diego, the University of North Texas, Denton, and Mississippi State University. Dr. Baskes’s interests encompass the use of computational methods to investigate material properties. His major scientific accomplishments have been 1) development of the embedded atom method, 2) development of models to predict the behavior of helium in metals, and 3) development of a model to explain hydrogen isotope recombination. He is a member of the NAE, TMS, Sigma Xi, and MRS and a fellow of LANL, TMS and IOP. Dr. Baskes has authored or co-authored more than 236 technical publications that have had well over 15000 citations. Of these publications, three have over 1500 citations and 26 have over 100 citations apiece. He has received two DOE awards for outstanding research and is in the DOE/BES Hall of Fame. Description of Work: Baskes is known for pioneering the Embedded Atom Method (EAM) and modified EAM (MEAM) interatomic potential forms. He has developed potentials for many material systems including: Ag, AgSn, AgTaO, Al, AlB, AlC, AlCa, AlCo, AlCr, AlCrC, AlCu, AlCuFe, AlFe, AlH, AlMg, AlO, AlSi, AlSiMg, AlSiMgCuFe, AlTa, Am, AmN, Au, AuCu, B, Be, C, CFe, CH, Ca, Co, CoAu, Cr, CrTa, Cs, Cu, CuFe, Dy, Er, Fe, FeC, FeCr, FeGa, FeH, FeHe, FePt, Ga, Gd, H, He, Hf, Ho, Ir, LJ, Mg, MgAlB, MgAlH, MgB, MgCu, MgFe, MgH, Mo, MoNb, MoNbSi, MoSi, N, Nb, NbSi, Nd, Ni, NiAl, NiAlCo, NiAlCr, NiAlTa, NiC, NiCo, NiCr, NiH, NiO, NiSi, NiTa, NiTi, NiZr, O, OH, P, Pd, PdC, PdH, PdHC, Pr, Pt, PtMo, PtNi, PtO, PtRe, Pu, PuGa, PuGaHe, PuHe, Re, Ru, Sc, Si, SiB, SiC, SiCu, SiFe, SiH, SiMg, SiO, Sn, SnCu, Sr, SrO, SrTiO, Ta, Tb, Te, Ti, TiC, TiCAl, TiCH, TiH, TiNb, Tl, U, UCs, UFe, UH, UHe, USi, UZr, UZr3, V, W, WSi, Y, Zn, Zr, ZrH, ZrN, ZrO, ZrOH, ZrSiO For a complete bibliography see: https://scholar.google.com.au/citations?user=KLdedXgAAAAJ&hl=en Contributor of the following OpenKIM content: EAM_Dynamo_AngeloMoodyBaskes_1995_NiAlH__MO_418978237058_005 EAM_Dynamo_Angelo_Moody_NiAlH__MO_418978237058_000 EAM_Dynamo_Angelo_Moody_NiAlH__MO_418978237058_001 EAM_Dynamo_Angelo_Moody_NiAlH__MO_418978237058_002 EAM_Dynamo_Angelo_Moody_NiAlH__MO_418978237058_003 EAM_Dynamo_Angelo_Moody_NiAlH__MO_418978237058_004 Developer of the following OpenKIM content: EAM_CubicNaturalSpline_AngeloMoodyBaskes_1995_Ni__MO_800536961967_003 EAM_Dynamo_AngeloMoodyBaskes_1995_NiAlH__MO_418978237058_005 EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Ag__MO_626948998302_000 EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Au__MO_559016907324_000 EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Cu__MO_666348409573_004 EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Ni__MO_580571659842_000 EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Pd__MO_786012902615_000 EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Pt__MO_757342646688_000 EAM_Dynamo__MD_120291908751_005 MEAM_LAMMPS_AsadiZaeemNouranian_2015_Cu__MO_390178379548_000 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MEAM_LAMMPS__MD_249792265679_000 MEAM_LAMMPS__MD_249792265679_001 MEAM_LAMMPS__MD_249792265679_002 MSMEAM_Dynamo_Gibson_Baskes__MD_080127949983_000 MSMEAM_Gibson_Ti__MO_309653492217_000 Sim_LAMMPS_MEAM_AsadiZaeemNouranian_2015_Cu__SM_239791545509_000 Sim_LAMMPS_MEAM_AsadiZaeemNouranian_2015_Fe__SM_042630680993_001 Sim_LAMMPS_MEAM_AsadiZaeemNouranian_2015_Ni__SM_078420412697_001 Sim_LAMMPS_MEAM_JelinekGrohHorstemeyer_2012_AlSiMgCuFe__SM_656517352485_000 Sim_LAMMPS_MEAM_LiyanageKimHouze_2014_FeC__SM_652425777808_001 Implementer of the following OpenKIM content: