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Anushri Khandale
Anushri Khandale
Indian Institute of Information Technology, Design and Manufacturing, Kancheepuram.
Verified email at iiitdm.ac.in
Title
Cited by
Cited by
Year
A review on recent progress and selection of cobalt-based cathode materials for low temperature-solid oxide fuel cells
RV Kumar, AP Khandale
Renewable and Sustainable Energy Reviews 156, 111985, 2022
832022
Combustion synthesized Nd2− xCexCuO4 (x= 0–0.25) cathode materials for intermediate temperature solid oxide fuel cell applications
AP Khandale, SS Bhoga
Journal of Power Sources 195 (24), 7974-7982, 2010
502010
Investigation on Pr2− xSrxNiO4+ δ (x= 0.3–1.0) cathode materials for intermediate temperature solid oxide fuel cell
SS Bhoga, AP Khandale, BS Pahune
Solid State Ionics 262, 340-344, 2014
372014
An investigation on strontium doped Sm2NiO4+ δ cathode for intermediate temperature solid oxide fuel cells
VN Chaudhari, AP Khandale, SS Bhoga
Journal of Power Sources 248, 647-654, 2014
342014
Electrochemical performance of strontium-doped neodymium nickelate mixed ionic–electronic conductor for intermediate temperature solid oxide fuel cells
AP Khandale, JD Punde, SS Bhoga
Journal of Solid State Electrochemistry 17, 617-626, 2013
332013
Development of Pr2-xSrxCuO4±δ mixed ion-electron conducting system as cathode for intermediate temperature solid oxide fuel cell
AP Khandale, BS Pahune, SS Bhoga, RV Kumar, R Tomov
international journal of hydrogen energy 44 (29), 15417-15435, 2019
262019
Improved electrical and electrochemical performance of co-doped Nd1. 8Sr0. 2Ni1− xCuxO4+ δ
AP Khandale, MG Bansod, SS Bhoga
Solid State Ionics 276, 127-135, 2015
232015
Effect of Ni doping on structural, electrical and electrochemical properties of Nd1. 8Ce0. 2Cu1− xNixO4+ δ mixed ionic–electronic conductor
AP Khandale, SS Bhoga, RV Kumar
Solid State Ionics 238, 1-6, 2013
232013
Crystal structure, electrical and electrochemical properties of Cu co-doped Pr1. 3Sr0. 7NiO4+ δ mixed ionic-electronic conductors (MIECs)
MB Bansod, AP Khandale, RV Kumar, SS Bhoga
international journal of hydrogen energy 43 (1), 373-384, 2018
202018
Study of Nd2–x Ce x CuO4 ± δ (x = 0.1–0.25) as cathode material for intermediate-temperature solid oxide fuel …
AP Khandale, SS Bhoga
Journal of Solid State Electrochemistry 16, 341-352, 2012
202012
Nd1. 8Ce0. 2CuO4+ δ: Ce0. 9Gd0. 1O2− δ as a composite cathode for intermediate-temperature solid oxide fuel cells
AP Khandale, SS Bhoga
Journal of Power Sources 268, 794-803, 2014
192014
Sr-doped Sm2CuO4 cathode for intermediate temperature solid oxide fuel cells
VN Chaudhari, AP Khandale, SS Bhoga
Solid State Ionics 268, 140-149, 2014
182014
Electrochemical performance of microwave synthesized Nd1. 8Ce0. 2CuO4±δ cathode for intermediate temperature solid oxide fuel cell applications
AP Khandale, SS Bhoga
Journal of alloys and compounds 509 (24), 6955-6961, 2011
182011
Nd1. 8Sr0. 2NiO4− δ: Ce0. 9Gd0. 1O2− δ composite cathode for intermediate temperature solid oxide fuel cells
AP Khandale, RP Lajurkar, SS Bhoga
International journal of hydrogen energy 39 (33), 19039-19050, 2014
172014
Study on ammonium acetate salt-added polyvinyl alcohol-based solid proton-conducting polymer electrolytes
AP Khandale, SS Bhoga, SK Gedam
Ionics 19, 1619-1626, 2013
172013
Electrochemical performance of Nd1. 8Ce0. 2CuO4±δ mixed-ionic–electronic conductor for intermediate solid oxide fuel cells
AP Khandale, SS Bhoga
Solid State Ionics 182 (1), 82-90, 2011
172011
Electrochemical performance of a mechanochemically prepared submicron-sized crystalline Nd1. 8Ce0. 2CuO4±δ cathode for intermediate temperature solid oxide fuel cells
AP Khandale, SS Bhoga
Electrochimica acta 56 (25), 9219-9223, 2011
142011
An investigation of different Nd1. 8Ce0. 2CuO4+ δ-Ce0. 9Gd0. 1O2-δ composite cathodes
AP Khandale, SS Bhoga
Electrochimica Acta 130, 439-445, 2014
112014
Development of solid proton conductors based on doped polyvinyl alcohol
SK Gedam, AP Khandale, SS Bhoga
NISCAIR-CSIR, India, 2013
112013
Effect of Sr doping on structural, electrical and electrochemical properties of Nd2CuO4 for IT-SOFC application
AP Khandale, SS Bhoga
Solid State Ionics 262, 416-420, 2014
102014
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