Models - by Species




Models in the OpenKIM Repository

Each "model" is a specific parameterization of an interatomic model class for a given material system (e.g. the Lennard-Jones potential for Ar). Click for more information.

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Pt
ModelSimulator
"Any" means any KIM-compliant simulator, otherwise the model is a simulator model that only works with that specific simulator.
Title
EAM_Dynamo_AdamsFoilesWolfer_1989Universal6_Pt__MO_388062184209_000AnyEAM potential (LAMMPS cubic hermite tabulation) for Pt (Universal6) developed by Adams, Foiles and Wolfer (1989) v000
EAM_Dynamo_FoilesBaskesDaw_1986Universal3_Pt__MO_757342646688_000AnyEAM potential (LAMMPS cubic hermite tabulation) for Pt (Universal3) developed by Foiles, Baskes, and Daw (1986) v000
EAM_Dynamo_OBrienBarrPrice_2018_PtAu__MO_946831081299_000AnyEAM potential (LAMMPS cubic hermite tabulation) for the Pt-Au system developed by O'Brien et al. (2018) v000
EAM_Dynamo_ZhouJohnsonWadley_2004_CuAgAuNiPdPtAlPbFeMoTaWMgCoTiZr__MO_870117231765_000AnyEAM potential (LAMMPS cubic hermite tabulation) for the Cu-Ag-Au-Ni-Pd-Pt-Al-Pb-Fe-Mo-Ta-W-Mg-Co-Ti-Zr system developed by Zhou, Johnson, and Wadley (2004) v000
EAM_Dynamo_ZhouJohnsonWadley_2004NISTretabulation_Pt__MO_601539325066_000AnyEAM potential (LAMMPS cubic hermite tabulation) for Pt developed by Zhou, Johnson, and Wadley (2004); NIST retabulation v000
EAM_Dynamo_ZhouWadleyJohnson_2001_Pt__MO_102190350384_005AnyEAM potential (LAMMPS cubic hermite tabulation) for Pt developed by Zhou, Wadley and Johnson (2001) v005
EAM_QuinticClampedSpline_Kim_2021_PtAu__MO_463728687265_000AnyEAM potential (clamed quintic spline) for the Pt-Au system developed by Kim (2021) based on Brien et al. (2018) v000
EMT_Asap_Standard_Jacobsen_Stoltze_Norskov_AlAgAuCuNiPdPt__MO_118428466217_002AnyStandard Effective Medium Theory potential for face-centered cubic metals as implemented in ASE/Asap.
EMT_Asap_Standard_JacobsenStoltzeNorskov_1996_AlAgAuCuNiPdPt__MO_115316750986_001AnyEMT potential for Al, Ni, Cu, Pd, Ag, Pt and Au developed by Jacobsen, Stoltze, and Norskov (1996) v001
EMT_Asap_Standard_JacobsenStoltzeNorskov_1996_Pt__MO_637493005914_001AnyEMT potential for Pt developed by Jacobsen, Stoltze, and Norskov (1996) v001
LJ_ElliottAkerson_2015_Universal__MO_959249795837_003AnyEfficient 'universal' shifted Lennard-Jones model for all KIM API supported species developed by Elliott and Akerson (2015) v003
MEAM_2NN_Fe_to_Ga__MO_145522277939_001AnyModel parameterization of 2NN MEAM model
MEAM_LAMMPS_JeongLee_2020_PtC__MO_716623333967_002AnyMEAM Potential for the Pt-C system developed by Jeong, and Lee (2020) v002
MEAM_LAMMPS_KimLee_2006_PtFe__MO_343168101490_002AnyMEAM Potential for the Pt-Fe system developed by Kim, Koo, and Lee (2006) v002
MEAM_LAMMPS_KimSeolJi_2017_PtAl__MO_793141037706_002AnyMEAM Potential for the Pt-Al system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_KimSeolJi_2017_PtCo__MO_545073984441_002AnyMEAM Potential for the Pt-Co system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_KimSeolJi_2017_PtCu__MO_070797404269_002AnyMEAM Potential for the Pt-Cu system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_KimSeolJi_2017_PtMo__MO_831380044253_002AnyMEAM Potential for the Pt-Mo system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_KimSeolJi_2017_PtNi__MO_020840179467_002AnyMEAM Potential for the Pt-Ni system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_KimSeolJi_2017_PtTi__MO_280985530673_002AnyMEAM Potential for the Pt-Ti system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_KimSeolJi_2017_PtV__MO_912978207512_002AnyMEAM Potential for the Pt-V system developed by Kim and Lee (2017) v002
MEAM_LAMMPS_LeeShimBaskes_2003_Pt__MO_534993486058_001AnyMEAM Potential for Pt developed by Lee, Shim, and Baskes (2003) v001
QUIP_GAP_Xu_2003_Pt__MO_370837021112_000AnyGAP model for Pt developed by Xu (2023) v000
Sim_LAMMPS_IFF_CHARMM_GUI_HeinzLinMishra_2023_Nanomaterials__SM_232384752957_000LAMMPSInterface Force Field (IFF) parameters due to Heinz et al. as used in the CHARMM-GUI input generator v000
Sim_LAMMPS_IFF_PCFF_HeinzMishraLinEmami_2015Ver1v5_FccmetalsMineralsSolventsPolymers__SM_039297821658_001LAMMPSLAMMPS PCFF bonded force-field combined with IFF non-bonded 9-6 Lennard-Jones potentials for metal interactions v001
Tersoff_LAMMPS_AlbeNordlundAverback_2002_PtC__MO_500121566391_004AnyTersoff-style three-body potential for PtC developed by Albe, Nordlund, and Averback (2002) v004