Investigations on the effect of various plasticizers in PVA–PMMA solid polymer blend electrolytes S Rajendran, M Sivakumar, R Subadevi Materials letters 58 (5), 641-649, 2004 | 442 | 2004 |
An investigation of conductivity, microstructure and stability of electrolyte compositions in the system 9 mol%(Sc2O3–Y2O3)–ZrO2 (Al2O3) SPS Badwal, FT Ciacchi, S Rajendran, J Drennan Solid State Ionics 109 (3-4), 167-186, 1998 | 216 | 1998 |
Characterisation, conductivity and mechanical properties of the oxygen-ion conductor La 0.9 Sr 0.1 Ga 0.8 Mg 0.2 O 3-x J Drennan, V Zelizko, D Hay, FT Ciacchi, S Rajendran, SPS Badwal Journal of Materials Chemistry 7 (1), 79-83, 1997 | 213 | 1997 |
Effect of salt concentration in poly (vinyl alcohol)-based solid polymer electrolytes S Rajendran, M Sivakumar, R Subadevi Journal of Power Sources 124 (1), 225-230, 2003 | 187 | 2003 |
Li-ion conduction of plasticized PVA solid polymer electrolytes complexed with various lithium salts S Rajendran, M Sivakumar, R Subadevi Solid State Ionics 167 (3-4), 335-339, 2004 | 172 | 2004 |
Thermal and ionic conductivity studies of plasticized PMMA/PVdF blend polymer electrolytes S Rajendran, O Mahendran, T Mahalingam European polymer journal 38 (1), 49-55, 2002 | 157 | 2002 |
Lithium ion conduction in PVC–LiBF4 electrolytes gelled with PMMA S Rajendran, T Uma Journal of power sources 88 (2), 282-285, 2000 | 139 | 2000 |
Electrochemical insertion of lithium into multiwalled carbon nanotube/silicon composites produced by ballmilling JY Eom, JW Park, HS Kwon, S Rajendran Journal of The Electrochemical Society 153 (9), A1678, 2006 | 132 | 2006 |
Electrochemical properties of Si/Ni alloy–graphite composite as an anode material for Li-ion batteries MS Park, YJ Lee, S Rajendran, MS Song, HS Kim, JY Lee Electrochimica acta 50 (28), 5561-5567, 2005 | 128 | 2005 |
Investigations on PVC/PAN composite polymer electrolytes S Rajendran, R shanker Babu, P Sivakumar Journal of Membrane Science 315 (1-2), 67-73, 2008 | 120 | 2008 |
Si–Ni alloy–graphite composite synthesized by arc-melting and high-energy mechanical milling for use as an anode in lithium-ion batteries MS Park, S Rajendran, YM Kang, KS Han, YS Han, JY Lee Journal of power sources 158 (1), 650-653, 2006 | 118 | 2006 |
Carbon-supported and unsupported Pt anodes for direct borohydride liquid fuel cells JH Kim, HS Kim, YM Kang, MS Song, S Rajendran, SC Han, DH Jung, ... Journal of The Electrochemical Society 151 (7), A1039, 2004 | 117 | 2004 |
Ionic conductivity studies in poly (methylmethacrylate)–polyethlene oxide hybrid polymer electrolytes with lithium salts S Rajendran, R Kannan, O Mahendran Journal of power sources 96 (2), 406-410, 2001 | 116 | 2001 |
Electrochemical deposition of ZnTe thin films T Mahalingam, VS John, S Rajendran, PJ Sebastian Semiconductor science and technology 17 (5), 465, 2002 | 115 | 2002 |
Characterization of PVC/PEMA based polymer blend electrolytes S Rajendran, MR Prabhu, MU Rani International journal of electrochemical science 3 (3), 282-290, 2008 | 113 | 2008 |
Ionic conduction in poly (vinyl chloride)/poly (ethyl methacrylate)-based polymer blend electrolytes complexed with different lithium salts S Rajendran, MR Prabhu, MU Rani Journal of power sources 180 (2), 880-883, 2008 | 110 | 2008 |
Compositional effect of PVdF–PEMA blend gel polymer electrolytes for lithium polymer batteries M Sivakumar, R Subadevi, S Rajendran, HC Wu, NL Wu European Polymer Journal 43 (10), 4466-4473, 2007 | 108 | 2007 |
Ionic conductivity studies in composite solid polymer electrolytes based on methylmethacrylate S Rajendran, O Mahendran, R Kannan Journal of Physics and Chemistry of Solids 63 (2), 303-307, 2002 | 108 | 2002 |
Ni–CeO 2 spherical nanostructures for magnetic and electrochemical supercapacitor applications R Murugan, G Ravi, G Vijayaprasath, S Rajendran, M Thaiyan, ... Physical Chemistry Chemical Physics 19 (6), 4396-4404, 2017 | 105 | 2017 |
An investigation of PVdF/PVC-based blend electrolytes with EC/PC as plasticizers in lithium battery applications S Rajendran, P Sivakumar Physica B: Condensed Matter 403 (4), 509-516, 2008 | 104 | 2008 |