Nickel nanowires under uniaxial loads: A molecular dynamics simulation study AR Setoodeh, H Attariani, M Khosrownejad Computational Materials Science 44 (2), 378-384, 2008 | 98 | 2008 |
Anisotropic compositional expansion and chemical potential for amorphous lithiated silicon under stress tensor VI Levitas, H Attariani Scientific Reports 3 (1), 1615, 2013 | 57 | 2013 |
Anisotropic compositional expansion in elastoplastic materials and corresponding chemical potential: Large-strain formulation and application to amorphous lithiated silicon VI Levitas, H Attariani Journal of the Mechanics and Physics of Solids 69, 84-111, 2014 | 55 | 2014 |
Atomistic simulations of the buckling behavior of perfect and defective silicon carbide nanotubes AR Setoodeh, M Jahanshahi, H Attariani Computational materials science 47 (2), 388-397, 2009 | 37 | 2009 |
Electromechanical properties of 1D ZnO nanostructures: nanopiezotronics building blocks, surface and size-scale effects K Momeni, H Attariani Physical Chemistry Chemical Physics 16 (10), 4522-4527, 2014 | 35 | 2014 |
Defect engineering: a path toward exceeding perfection H Attariani, K Momeni, K Adkins ACS omega 2 (2), 663-669, 2017 | 26 | 2017 |
Nanoscale simulations of Bauschinger effects on a nickel nanowire AR Setoodeh, H Attariani Materials Letters 62 (27), 4266-4268, 2008 | 26 | 2008 |
Atomic defects influenced mechanics of II–VI nanocrystals M Ghosh, S Ghosh, H Attariani, K Momeni, M Seibt, G Mohan Rao Nano letters 16 (10), 5969-5974, 2016 | 20 | 2016 |
Mechanochemical continuum modeling of nanovoid nucleation and growth in reacting nanoparticles VI Levitas, H Attariani The Journal of Physical Chemistry C 116 (1), 54-62, 2012 | 20 | 2012 |
Structural transformation in monolayer materials: A 2D to 1D transformation K Momeni, H Attariani, RA LeSar Physical Chemistry Chemical Physics 18 (29), 19873-19879, 2016 | 19 | 2016 |
Mechanical property enhancement of one-dimensional nanostructures through defect-mediated strain engineering H Attariani, SE Rezaei, K Momeni Extreme Mechanics Letters 27, 66-75, 2019 | 17 | 2019 |
Defect engineering, a path to make ultra-high strength low-dimensional nanostructures H Attariani, SE Rezaei, K Momeni Computational Materials Science 151, 307-316, 2018 | 15 | 2018 |
Mechanical properties of silicon-germanium nanotubes under tensile and compressive loadings A Setoodeh, H Attariani, M Jahanshahi Journal of Nano Research 15, 105-114, 2011 | 13 | 2011 |
A thermodynamically-consistent multi-physics framework for crystallization of phase-change material H Attariani, W Wang, R Gałek Journal of Crystal Growth 542, 125687, 2020 | 12 | 2020 |
Coupled large-strain mechanochemical theory for solid-state reaction with application to oxidation H Attariani, VI Levitas Acta Materialia 220, 117284, 2021 | 9 | 2021 |
Latent track formation and recrystallization in swift heavy ion irradiation H Attariani Physical Chemistry Chemical Physics 24 (39), 24480-24486, 2022 | 3 | 2022 |
Experimental Demonstration of Vanadium Dioxide Phase Change Thin Film Based Tunable Spiral Inductors L Li, E Shin, H Attariani, W Wang, G Subramanyam ECS Journal of Solid State Science and Technology 9 (7), 075003, 2020 | 3 | 2020 |
Stress Engineering: The Response of Phase Change Materials to Mechanical Stimuli M Javanbakht, S Mohebbi, H Attariani ACS Applied Electronic Materials 5 (6), 3521-3530, 2023 | 2 | 2023 |
Coupled mechano-electro-thermal model to predict phase transition in phase change materials M Javanbakht, H Attariani Computational Materials Science 233, 112696, 2024 | 1 | 2024 |
Reply to “Comment on'Mechanochemical Continuum Modeling of Nanovoid Nucleation and Growth in Reacting Nanoparticles'″ VI Levitas, H Attariani The Journal of Physical Chemistry C 116 (23), 12991-12993, 2012 | 1 | 2012 |