Hamed Attariani, Ph.D.

Affiliations: 
2014 Aerospace Engineering Iowa State University, Ames, IA, United States 
Area:
Applied Mechanics, Materials Science Engineering, Mechanical Engineering, Aerospace Engineering
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"Hamed Attariani"

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Valery I. Levitas grad student 2014 Iowa State
 (Coupled mechanochemical theories for reacting systems with application to nanovoid nucleation and Li-ion batteries.)
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Publications

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Attariani H. (2022) Latent track formation and recrystallization in swift heavy ion irradiation. Physical Chemistry Chemical Physics : Pccp. 24: 24480-24486
Attariani H, Rezaei SE, Momeni K. (2019) Mechanical property enhancement of one-dimensional nanostructures through defect-mediated strain engineering Extreme Mechanics Letters. 27: 66-75
Attariani H, Rezaei SE, Momeni K. (2018) Defect engineering, a path to make ultra-high strength low-dimensional nanostructures Computational Materials Science. 151: 307-316
Attariani H, Momeni K, Adkins K. (2017) Defect Engineering: A Path toward Exceeding Perfection. Acs Omega. 2: 663-669
Ghosh M, Ghosh S, Attariani H, et al. (2016) Atomic defects influenced mechanics of II-VI nanocrystals. Nano Letters
Momeni K, Attariani H, LeSar RA. (2016) Structural transformation in monolayer materials: a 2D to 1D transformation. Physical Chemistry Chemical Physics : Pccp
Momeni K, Attariani H. (2014) Electromechanical properties of 1D ZnO nanostructures: nanopiezotronics building blocks, surface and size-scale effects. Physical Chemistry Chemical Physics : Pccp. 16: 4522-7
Levitas VI, Attariani H. (2014) Anisotropic compositional expansion in elastoplastic materials and corresponding chemical potential: Large-strain formulation and application to amorphous lithiated silicon Journal of the Mechanics and Physics of Solids. 69: 84-111
Levitas VI, Attariani H. (2013) Anisotropic compositional expansion and chemical potential for amorphous lithiated silicon under stress tensor. Scientific Reports. 3: 1615
Levitas VI, Attariani H. (2012) Reply to "comment on 'Mechanochemical continuum modeling of nanovoid nucleation and growth in reacting nanoparticles'", Journal of Physical Chemistry C. 116: 12991-12993
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