Follow
Neha Sharma
Neha Sharma
Post doctoral Fellow
Verified email at students.iiserpune.ac.in
Title
Cited by
Cited by
Year
Hard carbons for sodium‐ion battery anodes: synthetic strategies, material properties, and storage mechanisms
M Wahid, D Puthusseri, Y Gawli, N Sharma, S Ogale
ChemSusChem 11 (3), 506-526, 2018
1762018
Electrochemical aptamer-based biosensors for the detection of cardiac biomarkers
I Grabowska, N Sharma, A Vasilescu, M Iancu, G Badea, R Boukherroub, ...
ACS omega 3 (9), 12010-12018, 2018
1322018
Comparative evaluation of MAX, MXene, NanoMAX, and NanoMAX-derived-MXene for microwave absorption and Li ion battery anode applications
A Sengupta, BVB Rao, N Sharma, S Parmar, V Chavan, SK Singh, S Kale, ...
Nanoscale 12 (15), 8466-8476, 2020
952020
CO2 Laser Direct Written MOF-Based Metal-Decorated and Heteroatom-Doped Porous Graphene for Flexible All-Solid-State Microsupercapacitor with Extremely …
A Basu, K Roy, N Sharma, S Nandi, R Vaidhyanathan, S Rane, C Rode, ...
ACS Applied Materials & Interfaces 8 (46), 31841-31848, 2016
762016
Direct spectroscopic evidence for an n→ π* interaction
SK Singh, KK Mishra, N Sharma, A Das
Angewandte Chemie International Edition 55 (27), 7801-7805, 2016
612016
Photocatalytic Activation and Reduction of CO2 to CH4 over Single Phase Nano Cu3SnS4: A Combined Experimental and Theoretical Study
N Sharma, T Das, S Kumar, R Bhosale, M Kabir, S Ogale
ACS Applied Energy Materials 2 (8), 5677-5685, 2019
582019
Dual-ligand Fe-metal organic framework based robust high capacity Li ion battery anode and its use in a flexible battery format for electro-thermal heating
N Sharma, S Szunerits, R Boukherroub, R Ye, S Melinte, MO Thotiyl, ...
ACS Applied Energy Materials 2 (6), 4450-4457, 2019
342019
Realization of High Capacity and Cycling Stability in Pb‐Free A2CuBr4 (A=CH3NH3/Cs, 2 D/3 D) Perovskite‐Based Li‐Ion Battery Anodes
P Pandey, N Sharma, RA Panchal, SW Gosavi, S Ogale
ChemSusChem 12 (16), 3742-3746, 2019
332019
Interactions between multiwall carbon nanotubes and poly (diallyl dimethylammonium) chloride: effect of the presence of a surfactant
P Kaur, MS Shin, A Joshi, N Kaur, N Sharma, JS Park, SS Sekhon
The Journal of Physical Chemistry B 117 (11), 3161-3166, 2013
332013
Non-covalent functionalization of graphene with poly (diallyl dimethylammonium) chloride: effect of a non-ionic surfactant
P Kaur, MS Shin, N Sharma, N Kaur, A Joshi, SR Chae, JS Park, MS Kang, ...
international journal of hydrogen energy 40 (3), 1541-1547, 2015
302015
Single‐Phase Cu3SnS4 Nanoparticles for Robust High Capacity Lithium‐Ion Battery Anodes
N Sharma, D Phase, MO Thotiyl, S Ogale
ChemElectroChem 6 (5), 1371-1375, 2019
212019
A combined experimental and computational study of gas sensing by Cu3SnS4 nanoparticulate film: high selectivity, stability, and reversibility for room temperature H2S sensing
M Thripuranthaka, N Sharma, T Das, S Varhade, SS Badadhe, MO Thotiyl, ...
Adv. Mater. Interfaces 5, 1701492, 2018
212018
Electrochemical evaluation of the stability and capacity of r‐GO wrapped Copper Antimony Chalcogenide anode for Li ion battery
P Yadav, N Sharma, A Patrike, YM Sabri, LA Jones, M Shelke
ChemElectroChem 7 (15), 3291-3300, 2020
82020
Hard Carbon and Li4Ti5O12-Based Physically Mixed Anodes for Superior Li-Battery Performance with Significantly Reduced Li Content: A Case of Synergistic …
N Sharma, D Puthusseri, MO Thotiyl, S Ogale
ACS omega 2 (12), 8818-8824, 2017
82017
Nanotubular hard carbon derived from renewable natural seed gel for high performance sodium‐ion battery anode
N Sharma, Y Gawli, A Ahmad, M Muhammed, S Ogale
ChemistrySelect 2 (23), 6909-6915, 2017
82017
Coherent Solution‐phase Synthesis of a Germanium‐Graphitic Nanocomposite and Its Evaluation for Lithium‐Ion Battery Anodes: Non‐innocent Role of the Mashima Reagent
N Akula, N Sharma, A Lohegaonkar, SB Ogale, M Majumdar
Chemistry–An Asian Journal 15 (5), 585-589, 2020
32020
Development of anode materials for rechargeable batteries
N SHARMA
Dept. of Chemistry, 2019
2019
The system can't perform the operation now. Try again later.
Articles 1–17