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Prasad Lokhande
Prasad Lokhande
Postdoctoral Fellow
Verified email at tcd.ie - Homepage
Title
Cited by
Cited by
Year
Materials and fabrication methods for electrochemical supercapacitors: overview
PE Lokhande, US Chavan, A Pandey
Electrochemical Energy Reviews 3 (1), 155-186, 2020
2132020
The progress and roadmap of metal–organic frameworks for high-performance supercapacitors
PE Lokhande, S Kulkarni, S Chakrabarti, HM Pathan, M Sindhu, D Kumar, ...
Coordination Chemistry Reviews 473, 214771, 2022
652022
Prospects of MXenes in energy storage applications
PE Lokhande, A Pakdel, HM Pathan, D Kumar, DVN Vo, A Al-Gheethi, ...
Chemosphere 297, 134225, 2022
562022
Nanostructured Ni (OH) 2/rGO composite chemically deposited on Ni foam for high performance of supercapacitor applications
PE Lokhande, US Chavan
Materials Science for Energy Technologies 2 (1), 52-56, 2019
522019
Chemically deposited ultrathin α-Ni (OH) 2 nanosheet using surfactant on Ni foam for high performance supercapacitor application
PE Lokhande, K Pawar, US Chavan
Materials Science for Energy Technologies 1 (2), 166-170, 2018
512018
Nanoflower-like Ni (OH) 2 synthesis with chemical bath deposition method for high performance electrochemical applications
PE Lokhande, US Chavan
Materials Letters 218, 225-230, 2018
452018
Bacterial nanocellulose: Green polymer materials for high performance energy storage applications
PE Lokhande, PP Singh, DVN Vo, D Kumar, K Balasubramanian, ...
Journal of Environmental Chemical Engineering 10 (5), 108176, 2022
392022
Nickel hydroxide nanosheets grown on nickel foam for high performance supercapacitor applications
US Chavan, PE Lokhande, S Bhosale
Materials Technology 37 (8), 728-734, 2022
282022
Surfactant-assisted cabbage rose-like CuO deposition on Cu foam by for supercapacitor applications
PE Lokhande, US Chavan
Inorganic and Nano-Metal Chemistry 48 (9), 1-8, 2019
262019
All solid-state asymmetric supercapacitor based on Ni. Co layered double hydroxide and rGO nanocomposite deposited on Ni foam
PE Lokhande, US Chavan
J. Electrochem. En. Conv. Stor. 17 (3), 031013-20, 2020
242020
Inorganic electrolytes in supercapacitor
PE Lokhande, US Chavan
Mater Res Found 61, 11-30, 2019
202019
New‐generation materials for flexible supercapacitors
PE Lokhande, US Chavan, S Bhosale, A Kalam, S Deokar
Flexible Supercapacitor Nanoarchitectonics, 277-313, 2021
192021
Conventional chemical precipitation route to anchoring Ni (OH) 2 for improving flame retardancy of PVA
PE Lokhande, US Chavan
Materials Today: Proceedings 5 (8), 16352-16357, 2018
192018
Synthesis and Characterization of Ni.Co(OH) 2 Material for Supercapacitor Application,
HS Lokhande, P. E., Panda
Int. Adv. Res. J. Sci. Eng. Technol 2 (9), 10-13, 2015
19*2015
Hierarchical ultrathin nanosheet of Ni (OH) 2/rGO composite chemically deposited on Ni foam for NOx gas sensors
PE Lokh, V Kadam, C Jagatap, US Chavan, R Udayabhaskar, HM Pathan
ES Materials & Manufacturing 17, 53-56, 2022
182022
One-step deposition of nanostructured Ni(OH)2/rGO for supercapacitor applications
VS Kadam, CV Jagtap, PE Lokhande, RN Bulakhe, SW Kang, AA Yadav, ...
Journal of Materials Science: Materials in Electronics 34 (13), 1083, 2023
142023
Cyclic voltammetry behavior modeling of fabricated nanostructured Ni(OH)2 electrode using artificial neural network for supercapacitor application
PE Lokhande, US Chavan
Proceedings of the Institution of Mechanical Engineers, Part C: Journal of …, 2020
132020
A review of recent progresses on nickel oxide/carbonous material composites as supercapacitor electrodes
SM Khomambazari, P Lokhande, S Padervand, ND Zaulkiflee, ...
Journal of Composites and Compounds 4 (13), 195-208, 2022
102022
Photocatalytic 1 and antimicrobial activity study for cadmium sulphide quantum dots
AQ Malik, PE Lokhande, D Kumar, J Mooney, A Sharma, TU Gani Mir
Materials Research Innovations 27 (6), 392-400, 2023
72023
Monochromatic Photochemical Deposition and Characterization of Zinc Selenide Thin Films
S Pawar, VA Tabhane, PE Lokh, J Kaur, RS Dubey, HM Pathan
ES Energy & Environment 17, 86-93, 2022
72022
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