Molecular dynamics simulations of polymer transport in nanocomposites T Desai, P Keblinski, SK Kumar The Journal of chemical physics 122 (13), 134910, 2005 | 212 | 2005 |
Determination of interfacial thermal resistance at the nanoscale L Hu, T Desai, P Keblinski Physical Review B 83 (19), 195423, 2011 | 174 | 2011 |
Structure, surface excess and effective interactions in polymer nanocomposite melts and concentrated solutions JB Hooper, KS Schweizer, TG Desai, R Koshy, P Keblinski The Journal of chemical physics 121 (14), 6986-6997, 2004 | 172 | 2004 |
Thermal transport in graphene-based nanocomposite L Hu, T Desai, P Keblinski Journal of Applied Physics 110 (3), 033517, 2011 | 119 | 2011 |
Grain boundaries in uranium dioxide: scanning electron microscopy experiments and atomistic simulations PV Nerikar, K Rudman, TG Desai, D Byler, C Unal, KJ McClellan, ... Journal of the American Ceramic Society 94 (6), 1893-1900, 2011 | 105 | 2011 |
Effect of crosslink formation on heat conduction in amorphous polymers G Kikugawa, TG Desai, P Keblinski, T Ohara Journal of Applied Physics 114 (3), 034302, 2013 | 99 | 2013 |
Comparison of ReaxFF, DFTB, and DFT for phenolic pyrolysis. 1. Molecular dynamics simulations T Qi, CW Bauschlicher Jr, JW Lawson, TG Desai, EJ Reed The Journal of Physical Chemistry A 117 (44), 11115-11125, 2013 | 94 | 2013 |
Roles of atomic restructuring in interfacial phonon transport S Shin, M Kaviany, T Desai, R Bonner Physical Review B 82 (8), 081302, 2010 | 86 | 2010 |
Anisotropic shock response of columnar nanocrystalline Cu SN Luo, TC Germann, TG Desai, DL Tonks, Q An Journal of Applied Physics 107 (12), 123507, 2010 | 83 | 2010 |
Generation of amorphous carbon models using liquid quench method: A reactive molecular dynamics study R Ranganathan, S Rokkam, T Desai, P Keblinski Carbon 113, 87-99, 2017 | 77 | 2017 |
Modeling initial stage of phenolic pyrolysis: Graphitic precursor formation and interfacial effects TG Desai, JW Lawson, P Keblinski Polymer 52 (2), 577-585, 2011 | 76 | 2011 |
Semiconductor having integrally-formed enhanced thermal management RW Bonner III, T Desai US Patent App. 13/316,906, 2013 | 67 | 2013 |
Phase-field simulation of thermal conductivity in porous polycrystalline microstructures PC Millett, D Wolf, T Desai, S Rokkam, A El-Azab Journal of Applied Physics 104 (3), 033512, 2008 | 62 | 2008 |
Passivation of aluminum nanoparticles by plasma-enhanced chemical vapor deposition for energetic nanomaterials A Shahravan, T Desai, T Matsoukas ACS applied materials & interfaces 6 (10), 7942-7947, 2014 | 61 | 2014 |
Modeling diffusion of adsorbed polymer with explicit solvent TG Desai, P Keblinski, SK Kumar, S Granick Physical review letters 98 (21), 218301, 2007 | 60 | 2007 |
Kinetically evolving irradiation-induced point defect clusters in UO 2 by molecular dynamics simulation DS Aidhy, PC Millett, T Desai, D Wolf, SR Phillpot Physical Review B 80 (10), 104107, 2009 | 52 | 2009 |
Atomistic simulations of diffusional creep in a nanocrystalline body-centered cubic material PC Millett, T Desai, V Yamakov, D Wolf Acta materialia 56 (14), 3688-3698, 2008 | 51 | 2008 |
Comparison of ReaxFF, DFTB, and DFT for phenolic pyrolysis. 2. Elementary reaction paths CW Bauschlicher Jr, T Qi, EJ Reed, A Lenfant, JW Lawson, TG Desai The Journal of Physical Chemistry A 117 (44), 11126-11135, 2013 | 45 | 2013 |
Dynamic response of phenolic resin and its carbon-nanotube composites to shock wave loading B Arman, Q An, SN Luo, TG Desai, DL Tonks, T Çağın, WA Goddard Iii Journal of Applied Physics 109 (1), 013503, 2011 | 40 | 2011 |
Improvement of heat transfer efficiency at solid-gas interfaces by self-assembled monolayers Z Liang, W Evans, T Desai, P Keblinski Applied Physics Letters 102 (6), 061907, 2013 | 38 | 2013 |