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Dr. S.A. Hashmi
Dr. S.A. Hashmi
Professor of Physics, University of Delhi, Delhi-110007, India
在 physics.du.ac.in 的电子邮件经过验证
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引用次数
引用次数
年份
Preparation of highly porous binderless activated carbon electrodes from fibres of oil palm empty fruit bunches for application in supercapacitors
R Farma, M Deraman, A Awitdrus, IA Talib, E Taer, NH Basri, ...
Bioresource technology 132, 254-261, 2013
4452013
Ionic liquid based sodium ion conducting gel polymer electrolytes
D Kumar, SA Hashmi
Solid State Ionics 181 (8-10), 416-423, 2010
2762010
Proton-conducting polymer electrolyte. I. The polyethylene oxide+ NH4ClO4 system
SA Hashmi, A Kumar, KK Maurya, S Chandra
Journal of Physics D: Applied Physics 23 (10), 1307, 1990
2731990
Ion transport and ion–filler-polymer interaction in poly (methyl methacrylate)-based, sodium ion conducting, gel polymer electrolytes dispersed with silica nanoparticles
D Kumar, SA Hashmi
Journal of Power Sources 195 (15), 5101-5108, 2010
2552010
Experimental investigations of an ionic-liquid-based, magnesium ion conducting, polymer gel electrolyte
GP Pandey, SA Hashmi
Journal of Power Sources 187 (2), 627-634, 2009
2072009
Preparation of a highly porous binderless activated carbon monolith from rubber wood sawdust by a multi-step activation process for application in supercapacitors
E Taer, M Deraman, IA Talib, A Awitdrus, SA Hashmi, AA Umar
International journal of electrochemical science 6 (8), 3301-3315, 2011
1942011
Studies on poly (vinylidene fluoride-co-hexafluoropropylene) based gel electrolyte nanocomposite for sodium–sulfur batteries
D Kumar, M Suleman, SA Hashmi
Solid State Ionics 202 (1), 45-53, 2011
1812011
Lithium ion transport and ion–polymer interaction in PEO based polymer electrolyte plasticized with ionic liquid
Y Kumar, SA Hashmi, GP Pandey
Solid State Ionics 201 (1), 73-80, 2011
1722011
Gel polymer electrolyte based electrical double layer capacitors: comparative study with multiwalled carbon nanotubes and activated carbon electrodes
Y Kumar, GP Pandey, SA Hashmi
The Journal of Physical Chemistry C 116 (50), 26118-26127, 2012
1712012
Experimental investigations on a sodium-ion-conducting polymer electrolyte based on poly (ethylene oxide) complexed with NaPF6
SA Hashmi, S Chandra
Materials Science and Engineering: B 34 (1), 18-26, 1995
1701995
Ionic liquid incorporated PEO based polymer electrolyte for electrical double layer capacitors: A comparative study with lithium and magnesium systems
GP Pandey, Y Kumar, SA Hashmi
Solid State Ionics 190 (1), 93-98, 2011
1682011
Ionic liquid mediated magnesium ion conduction in poly (ethylene oxide) based polymer electrolyte
Y Kumar, SA Hashmi, GP Pandey
Electrochimica acta 56 (11), 3864-3873, 2011
1662011
Proton conducting polymer electrolyte: II poly ethylene oxide + NH4l system
KK Maurya, N Srivastava, SA Hashmi, S Chandra
Journal of materials science 27, 6357-6364, 1992
1601992
Ionic liquid 1-ethyl-3-methylimidazolium tetracyanoborate-based gel polymer electrolyte for electrochemical capacitors
GP Pandey, SA Hashmi
Journal of Materials Chemistry A 1 (10), 3372-3378, 2013
1552013
Magnesium ion-conducting gel polymer electrolytes dispersed with nanosized magnesium oxide
GP Pandey, RC Agrawal, SA Hashmi
Journal of power sources 190 (2), 563-572, 2009
1552009
Ionic liquid incorporated polymer electrolytes for supercapacitor application
GP Pandey, Y Kumar, SA Hashmi
CSIR, 2010
1512010
Hot-press synthesized polyethylene oxide based proton conducting nanocomposite polymer electrolyte dispersed with SiO2 nanoparticles
GP Pandey, SA Hashmi, RC Agrawal
Solid State Ionics 179 (15-16), 543-549, 2008
1242008
Electrochemical redox supercapacitors using PVdF-HFP based gel electrolytes and polypyrrole as conducting polymer electrode
SK Tripathi, A Kumar, SA Hashmi
Solid state ionics 177 (33-34), 2979-2985, 2006
1192006
Conducting polymer‐based electrochemical redox supercapacitors using proton and lithium ion conducting polymer electrolytes
SA Hashmi, RJ Latham, RG Linford, WS Schlindwein
Polymer international 47 (1), 28-33, 1998
1191998
Ionic liquid incorporated, redox-active blend polymer electrolyte for high energy density quasi-solid-state carbon supercapacitor
N Yadav, N Yadav, SA Hashmi
Journal of Power Sources 451, 227771, 2020
1172020
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