1 |
Electrochemical Deposition of Polyelectrolytes Is Maximum at the Potential of Zero Charge Moore D, Arcila JA, Saraf RF Langmuir, 36(8), 1864, 2020 |
2 |
Single Electron Transistor in Aqueous Media Yu CC, Lee SW, Ong J, Moore D, Saraf RF Advanced Materials, 25(22), 3079, 2013 |
3 |
Ion Mediated Monolayer Deposition of Gold Nanoparticles on Microorganisms: Discrimination by Age Maheshwari V, Fomenko DE, Singh G, Saraf RF Langmuir, 26(1), 371, 2010 |
4 |
Photolytic metallization of an nanoclusters and electrically conducting micrometer long nanostructures on a DNA scaffold Kundu S, Maheshwari V, Saraf RF Langmuir, 24(2), 551, 2008 |
5 |
Direct measurement of ion accumulation at the electrode electrolyte interface under an oscillatory electric field Singh G, Saraf RF Journal of Physical Chemistry B, 110(25), 12581, 2006 |
6 |
Mineralization of monodispersed CdS nanoparticles on polyelectrolyte superstructure forming an electroluminescent "necklace-of-beads" Maheshwari V, Saraf RF Langmuir, 22(21), 8623, 2006 |
7 |
Deposition of CTAB-terminated nanorods on bacteria to form highly conducting hybrid systems Berry V, Gole A, Kundu S, Murphy CJ, Saraf RF Journal of the American Chemical Society, 127(50), 17600, 2005 |
8 |
Synthesis, characterization, and gas permeation properties of a hydrogen permeable silica membrane supported on porous alumina Lee D, Zhang L, Oyama ST, Niu S, Saraf RF Journal of Membrane Science, 231(1-2), 117, 2004 |
9 |
Theory of hydrogen permeability in nonporous silica membranes Oyama ST, Lee D, Hacarlioglu P, Saraf RF Journal of Membrane Science, 244(1-2), 45, 2004 |
10 |
Optical properties of an immobilized DNA monolayer from 255 to 700 nm Elhadj S, Singh G, Saraf RF Langmuir, 20(13), 5539, 2004 |