Crystal nucleation and the solid–liquid interfacial free energy VG Baidakov, AO Tipeev The Journal of Chemical Physics 136 (7), 2012 | 76 | 2012 |
Diffusivity, interfacial free energy, and crystal nucleation in a supercooled Lennard-Jones liquid AO Tipeev, ED Zanotto, JP Rino The Journal of Physical Chemistry C 122 (50), 28884-28894, 2018 | 54 | 2018 |
Crystal nucleation rate isotherms in Lennard-Jones liquids VG Baidakov, AO Tipeev, KS Bobrov, GV Ionov The Journal of chemical physics 132 (23), 2010 | 54 | 2010 |
Temperature dependence of the crystal-liquid interfacial free energy and the endpoint of the melting line VG Baidakov, SP Protsenko, AO Tipeev The Journal of Chemical Physics 139 (22), 2013 | 37 | 2013 |
Crystal nucleation kinetics in supercooled germanium: MD simulations versus experimental data AO Tipeev, ED Zanotto, JP Rino The Journal of Physical Chemistry B 124 (36), 7979-7988, 2020 | 30 | 2020 |
Nucleation kinetics in supercooled Ni50Ti50: Computer simulation data corroborate the validity of the Classical Nucleation Theory AO Tipeev, ED Zanotto Chemical Physics Letters 735, 136749, 2019 | 21 | 2019 |
On two approaches to determination of the nucleation rate of a new phase in computer experiments VG Baidakov, AO Tipeev Thermochimica acta 522 (1-2), 14-19, 2011 | 15 | 2011 |
Surface free energy and some other properties of a crystal–vapor interface: Molecular dynamics simulation of a Lennard-Jones system VG Baidakov, AO Tipeev, KR Protsenko Chemical Physics Letters 680, 10-16, 2017 | 14 | 2017 |
Nucleation of liquid droplets and voids in a stretched Lennard-Jones fcc crystal VG Baidakov, AO Tipeev The Journal of Chemical Physics 143 (12), 2015 | 14 | 2015 |
Melting line, spinodal and the endpoint of the melting line in the system with a modified Lennard—Jones potential SP Protsenko, VG Baidakov, A Tipeev Thermophysics and Aeromechanics 20 (1), 93-104, 2013 | 12 | 2013 |
Machine learning-assisted MD simulation of melting in superheated AlCu validates the Classical Nucleation Theory AO Tipeev, RE Ryltsev, NM Chtchelkatchev, S Ramprakash, ED Zanotto Journal of Molecular Liquids 387, 122606, 2023 | 11 | 2023 |
Unveiling relaxation and crystal nucleation interplay in supercooled germanium liquid AO Tipeev, JP Rino, ED Zanotto Acta Materialia 220, 117303, 2021 | 11 | 2021 |
Molecular dynamics simulation of homogeneous nucleation in a superheated Lennard-Jones crystal VG Baidakov, AO Tipeev Journal of Non-Crystalline Solids 503, 302-307, 2019 | 11 | 2019 |
Surface free energy of the crystal-liquid interface on the metastable extension of the melting curve VG Baidakov, SP Protsenko, AO Tipeev Jetp Letters 98, 801-804, 2014 | 11 | 2014 |
Accuracy, performance, and transferability of interparticle potentials for Al–Cu alloys: Comparison of embedded atom and deep machine learning models EO Khazieva, NM Shchelkatchev, AO Tipeev, RE Ryltsev Journal of Experimental and Theoretical Physics 137 (6), 864-877, 2023 | 6 | 2023 |
Direct determination of Lennard-Jones crystal surface free energy by a computational cleavage method AO Tipeev, JP Rino, ED Zanotto The Journal of Chemical Physics 155 (9), 2021 | 6 | 2021 |
Ideal and ultimate tensile strength of a solid body VG Baidakov, AO Tipeev High Temperature 56, 184-192, 2018 | 6 | 2018 |
Comment on “Theoretical prediction of crystallization kinetics of a supercooled Lennard-Jones fluid”[J. Chem. Phys. 148, 204506 (2018)] AO Tipeev The Journal of Chemical Physics 151 (1), 2019 | 5 | 2019 |
Metastable extension of the melting line and the critical endpoint VG Baidakov, SP Protsenko, AO Tipeev Journal of non-crystalline solids 356 (52-54), 2923-2927, 2010 | 5 | 2010 |
Effect of planar interfaces on nucleation in melting and crystallization JWP Schmelzer, AO Tipeev Entropy 24 (8), 1029, 2022 | 4 | 2022 |