Ultrafast optical switching properties of single-wall carbon nanotube polymer composites at 1.55 μm YC Chen, NR Raravikar, LS Schadler, PM Ajayan, YP Zhao, TM Lu, ... Applied Physics Letters 81 (6), 975-977, 2002 | 594 | 2002 |
Synthetic gecko foot-hairs from multiwalled carbon nanotubes B Yurdumakan, NR Raravikar, PM Ajayan, A Dhinojwala Chemical communications, 3799-3801, 2005 | 411 | 2005 |
Temperature dependence of radial breathing mode Raman frequency of single-walled carbon nanotubes NR Raravikar, P Keblinski, AM Rao, MS Dresselhaus, LS Schadler, ... Physical Review B 66 (23), 235424, 2002 | 357 | 2002 |
Enzyme− polymer− single walled carbon nanotube composites as biocatalytic films K Rege, NR Raravikar, DY Kim, LS Schadler, PM Ajayan, JS Dordick Nano Letters 3 (6), 829-832, 2003 | 238 | 2003 |
Synthesis and characterization of thickness-aligned carbon nanotube− polymer composite films NR Raravikar, LS Schadler, A Vijayaraghavan, Y Zhao, B Wei, PM Ajayan Chemistry of materials 17 (5), 974-983, 2005 | 209 | 2005 |
Enhanced thermal transport at covalently functionalized carbon nanotube array interfaces S Kaur, N Raravikar, BA Helms, R Prasher, DF Ogletree Nature communications 5 (1), 3082, 2014 | 181 | 2014 |
Frictional anisotropy of oriented carbon nanotube surfaces PL Dickrell, SB Sinnott, DW Hahn, NR Raravikar, LS Schadler, PM Ajayan, ... Tribology Letters 18, 59-62, 2005 | 169 | 2005 |
Interfacial thermal conductance between silicon and a vertical carbon nanotube M Hu, P Keblinski, JS Wang, N Raravikar Journal of Applied Physics 104 (8), 2008 | 134 | 2008 |
Ultrafast all-optical switch using carbon nanotube polymer composites Y Zhao, Y Chen, XC Zhang, NR Raravikar, PM Ajayan, TM Lu, GC Wang, ... US Patent 6,782,154, 2004 | 77 | 2004 |
In-situ functionalization of carbon nanotubes NR Raravikar, JC Matayabas Jr US Patent 7,465,605, 2008 | 73 | 2008 |
Epoxy-amine underfill materials for semiconductor packages Y Xiu, Y Bai, N Ananthakrishnan, NR Raravikar US Patent 8,916,981, 2014 | 70 | 2014 |
Through-die metal vias with a dispersed phase of graphitic structures of carbon for reduced thermal expansion and increased electrical conductance NR Raravikar, D Suh, L Arana, JC Matayabas Jr US Patent 7,666,768, 2010 | 70 | 2010 |
Adhesional shear strength and surface analysis of a PV module deployed in harsh coastal climate NG Dhere, NR Raravikar Solar Energy Materials and Solar Cells 67 (1-4), 363-367, 2001 | 62 | 2001 |
In-situ functionalization of carbon nanotubes NR Raravikar, JC Matayabas Jr US Patent 7,700,943, 2010 | 59 | 2010 |
Thermal energy exchange between carbon nanotube and air M Hu, S Shenogin, P Keblinski, N Raravikar Applied Physics Letters 90 (23), 2007 | 48 | 2007 |
Embedded carbon-nanotube-stiffened polymer surfaces NR Raravikar, AS Vijayaraghavan, P Keblinski, LS Schadler, PM Ajayan Small 1 (3), 317-320, 2005 | 44 | 2005 |
Carbon nanotube-based stress sensor NR Raravikar, NM Patel US Patent 7,553,681, 2009 | 41 | 2009 |
Nanostructure-based package interconnect D Suh, NR Raravikar US Patent 7,371,674, 2008 | 35 | 2008 |
Aligned nanotube bearing composite material N Raravikar, R Tanikella US Patent 8,222,750, 2012 | 32 | 2012 |
Stress sensor for in-situ measurement of package-induced stress in semiconductor devices MM Farahani, V Noveski, NM Patel, NR Raravikar US Patent 8,174,084, 2012 | 26 | 2012 |