ARTICLES IN JOURNALS / CONTRIBUTIONS TO BOOKS
Conference Proceedings / Conference Abstracts

Sorted by Year (Downloadable in PDF)

  1. On the role of built-in electric fields on the ignition of oxide coated nanoaluminum: Ion mobility versus Fickian diffusion
    B. J. Henz, T. Hawa, and M. R. Zachariah
    Journal of Applied Physics,107, 024901 (2010)

  2. Molecular dynamics simulation of the kinetic reaction of Ni and Al nanoparticles
    B. J. Henz, T. Hawa, and M. R. Zachariah
    Journal of Applied Physics,105, 124310 (2009)

  3. Molecular dynamics simulation of the kinetic sintering of Ni and Al nanoparticles
    B. J. Henz, T. Hawa, and M. R. Zachariah
    Molecular Simulation, 35, 804 (2009)

  4. Understanding the effect of hydrogen surface passivation and etching on the shape of silicon nanocrystals
    T. Hawa and M. R. Zachariah
    The Journal of Physical Chemisty C, 112, 14796 (2008)

  5. Mechano-Chemical Stability of Gold Nanoparticles Coated with Alkanethiolate Self-Assembled Monolayers
    B. J. Henz, T. Hawa, and M. R. Zachariah
    Langmuir, 24, 773 (2008)

  6. Ductility at the nano scale: Deformation and fracture of adhesive contacts using atomic force microscopy
    N. Pradeep, D. I. Kim, J. Grobelny, T. Hawa, B. J. Henz, and M. R. Zachariah
    Applied Physics Letters, 91, 203114 (2007)

  7. Development of a phenomenological scaling law for fractal aggregate sintering from molecular dynamics simulations
    T. Hawa and M. R. Zachariah
    Journal of Aerosol Science, 38, 793-806 (2007)

  8. Spatial and size-resolved electrostatic-directed deposition of nanoparticles on a field-generating substrate: Theoretical and experimental analysis
    D. Tsai, T. Hawa, R. J. Phaneuf, and M. R. Zachariah
    Nanotechnology 18, 365201 (2007)

  9. Development of a phenomenological scaling law for chain aggregate sintering from molecular dynamics simulations
    T. Hawa and M. R. Zachariah
    Physical Review B, 76, 054109 (2007)

  10. Coalescence kinetics of unequal sized nanoparticles
    T. Hawa and M. R. Zachariah
    Journal of Aerosol Science, 37, 1 (2006)

  11. Sintering of bare and hydrogen coated silicon nanoparticles
    T. Hawa and M. R. Zachariah
    Physical Review B, 71, 165434 (2005)

  12. Internal pressure and surface tension of bare and hydrogen coated silicon nanoparticles
    T. Hawa and M. R. Zachariah
    Journal of Chemical Physics, 121 (18), 9043 (2004)

  13. A molecular dynamics study of particle-particle collisions between hydrogen surface passivated silicon nanoparticles
    T. Hawa and M. R. Zachariah
    Physical Review B, 69, 35417 (2004)

  14. Mechanisms of detonation formation due to a temperature gradient
    A. K. Kapila, D. W. Schwendeman, J. J. Quirk, and T. Hawa
    Combustion Theory and Modeling, 6, 553 (2002)

  15. Numerical-asymptotic expansion matching for computing a viscous flow around a sharp corner
    T. Hawa and Z. Rusak
    Theoretical and Computational Fluid Dynamics, 15 (5), 265 (2002)

  16. The dynamics of a viscous flow in a channel with a sudden expansion
    T. Hawa and Z. Rusak
    Journal of Fluid Mechanics, 436, 283 (2001)

  17. Viscous flow in a slightly asymmetric channel with a sudden expansion
    T. Hawa and Z. Rusak
    Physics of Fluids, 12 (9) 2257 (2000)

  18. Viscous flow in a channel with a sudden expansion
    T. Hawa and Z. Rusak
    Advances in Fluid Mechanics III.” Edited by M. Rahman and C. A. Brebbia, WIT Press, 465 (2000)

  19. A weakly nonlinear analysis of the dynamics of a viscous flow in a symmetric channel with a sudden expansion
    Z. Rusak and T. Hawa
    Physics of Fluids, 11 (12) 3629, (1999)