Anodic growth of highly ordered TiO2 nanotube arrays to 134 μm in length M Paulose, K Shankar, S Yoriya, HE Prakasam, OK Varghese, GK Mor, ... The Journal of Physical Chemistry B 110 (33), 16179-16184, 2006 | 1149 | 2006 |
Highly-ordered TiO2 nanotube arrays up to 220 µm in length: use in water photoelectrolysis and dye-sensitized solar cells K Shankar, GK Mor, HE Prakasam, S Yoriya, M Paulose, OK Varghese, ... Nanotechnology 18 (6), 065707, 2007 | 1016 | 2007 |
A new benchmark for TiO2 nanotube array growth by anodization HE Prakasam, K Shankar, M Paulose, OK Varghese, CA Grimes The Journal of Physical Chemistry C 111 (20), 7235-7241, 2007 | 825 | 2007 |
TiO2 nanotube arrays of 1000 μm length by anodization of titanium foil: phenol red diffusion M Paulose, HE Prakasam, OK Varghese, L Peng, KC Popat, GK Mor, ... The Journal of Physical Chemistry C 111 (41), 14992-14997, 2007 | 650 | 2007 |
Vertically oriented Ti− Fe− O nanotube array films: toward a useful material architecture for solar spectrum water photoelectrolysis GK Mor, HE Prakasam, OK Varghese, K Shankar, CA Grimes Nano letters 7 (8), 2356-2364, 2007 | 452 | 2007 |
Self-Assembled Hybrid Polymer−TiO2 Nanotube Array Heterojunction Solar Cells K Shankar, GK Mor, HE Prakasam, OK Varghese, CA Grimes Langmuir 23 (24), 12445-12449, 2007 | 254 | 2007 |
Synthesis and photoelectrochemical properties of nanoporous iron (III) oxide by potentiostatic anodization HE Prakasam, OK Varghese, M Paulose, GK Mor, CA Grimes Nanotechnology 17 (17), 4285, 2006 | 249 | 2006 |
Initial Studies on the Hydrogen Gas Sensing Properties of Highly-Ordered High Aspect Ratio TiO2 Nanotube-Arrays 20 m to 222 m in Length S Yoriya, HE Prakasam, OK Varghese, K Shankar, M Paulose, GK Mor, ... Sensor Letters 4 (3), 334-339, 2006 | 130 | 2006 |
Electrical characterization of metal/AlN/Si thin film hydrogen sensors with Pd and Al gates EF McCullen, HE Prakasam, W Mo, R Naik, KYS Ng, L Rimai, GW Auner Journal of Applied Physics 93 (9), 5757-5762, 2003 | 42 | 2003 |
Highly-ordered titania nanotube arrays M Paulose, K Shankar, HE Prakasam, S Yoriya, OK Varghese, CA Grimes US Patent App. 12/693,123, 2010 | 19 | 2010 |
Nanotechnology K Shankar, GK Mor, HE Prakasam, S Yoriya, M Paulose, OK Varghese, ... Nanotechnology 18, 5707, 2007 | 14 | 2007 |
Anodic Growth of Highly Ordered TiO2 Nanotube Arrays to 134 mu m in Length (vol 110B, pg 16179, 2006) M Paulose, K Shankar, S Yoriya, HE Prakasam, OK Varghese, GK Mor, ... Journal of Physical Chemistry B 112 (47), 15261-15261, 2008 | 10 | 2008 |
Response transients in a Pd–Ni/AlN/n-Si hydrogen sensor L Zhang, EF McCullen, HE Prakasam, J Takur, R Naik, GW Auner, ... Sensors and Actuators B: Chemical 123 (1), 277-282, 2007 | 8 | 2007 |
Characteristic jump in the electrical properties of a -based device on exposure to hydrogen JS Thakur, HE Prakasam, L Zhang, EF McCullen, L Rimai, ... Physical Review B—Condensed Matter and Materials Physics 75 (7), 075308, 2007 | 8 | 2007 |
Towards highly efficient water photoelectrolysis HE Prakasam The Pennsylvania State University, 2008 | 3 | 2008 |
Palladium and aluminum gate metals/aluminum nitride/silicon balanced capacitors for selective hydrogen sensing HE Prakasam, F Serina, C Huang, GW Auner, L Rimai, S Ng, R Naik MRS Online Proceedings Library 693, 168-173, 2001 | 3 | 2001 |
Semiconductors II: Surfaces, interfaces, microstructures, and related topics-Characteristic jump in the electrical properties of a Pd/AlN/Si-based device on exposure to hydrogen JS Thakur, HE Prakasam, L Zhang, EF McCullen, L Rimai, ... Physical Review-Section B-Condensed Matter 75 (7), 75308-75308, 2007 | 1 | 2007 |
Highly-ordered titania nanotube arrays M Paulose, K Shankar, H Prakasam, S Yoriya, OK Varghese, CA Grimes | | 2009 |
Towards Highly Efficient Water Photoelectrolysis H Elavambedu Prakasam | | 2008 |
FABRICATION OF IRON (III) OXIDE NANOSTRUCTURES BY POTENTIOSTATIC ANODIZATION BJ Park, HE Prakasam, CA Grimes Annual Research Journal 3, 117, 2005 | | 2005 |