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Subramanian Natarajan
Subramanian Natarajan
Other namesNatarajan Subramanian
Assistant Professor, Waseda Research Institute for Science and Engineering(WRISE), Waseda University
Verified email at aoni.waseda.jp - Homepage
Title
Cited by
Cited by
Year
Recent advances based on the synergetic effect of adsorption for removal of dyes from waste water using photocatalytic process
S Natarajan, HC Bajaj, RJ Tayade
Journal of Environmental Sciences 65, 201-222, 2018
6922018
Burgeoning prospects of spent lithium‐ion batteries in multifarious applications
S Natarajan, V Aravindan
Advanced Energy Materials 8 (33), 1802303, 2018
1992018
An urgent call to spent LIB recycling: whys and wherefores for graphite recovery
S Natarajan, V Aravindan
Advanced Energy Materials 10 (37), 2002238, 2020
1882020
Recovery of value-added products from cathode and anode material of spent lithium-ion batteries
S Natarajan, AB Boricha, HC Bajaj
Waste Management 77, 455-465, 2018
1332018
Recycling strategies for spent Li-ion battery mixed cathodes
S Natarajan, V Aravindan
ACS Energy Letters 3 (9), 2101-2103, 2018
1232018
Environmental benign synthesis of reduced graphene oxide (rGO) from spent lithium-ion batteries (LIBs) graphite and its application in supercapacitor
S Natarajan, SR Ede, HC Bajaj, S Kundu
Colloids and Surfaces A: Physicochemical and Engineering Aspects 543, 98-108, 2018
982018
Antimonene dendritic nanostructures: Dual-functional material for high-performance energy storage and harvesting devices
VK Mariappan, K Krishnamoorthy, P Pazhamalai, S Natarajan, S Sahoo, ...
Nano Energy 77, 105248, 2020
952020
Template-free synthesis of carbon hollow spheres and reduced graphene oxide from spent lithium-ion batteries towards efficient gas storage
S Natarajan, HC Bajaj, V Aravindan
Journal of Materials Chemistry A 7 (7), 3244-3252, 2019
862019
Activated carbon derived from cherry flower biowaste with a self-doped heteroatom and large specific surface area for supercapacitor and sodium-ion battery applications
RM Bhattarai, K Chhetri, S Natarajan, S Saud, SJ Kim, YS Mok
Chemosphere 303, 135290, 2022
842022
Building next-generation supercapacitors with battery type Ni (OH) 2
S Natarajan, M Ulaganathan, V Aravindan
Journal of Materials Chemistry A 9 (28), 15542-15585, 2021
772021
Recovery and utilization of graphite and polymer materials from spent lithium-ion batteries for synthesizing polymer–graphite nanocomposite thin films
S Natarajan, DS Lakshmi, HC Bajaj, DN Srivastava
Journal of Environmental Chemical Engineering 3 (4), 2538-2545, 2015
772015
Achieving high-energy dual carbon Li-ion capacitors with unique low-and high-temperature performance from spent Li-ion batteries
ML Divya, S Natarajan, YS Lee, V Aravindan
Journal of materials chemistry A 8 (9), 4950-4959, 2020
762020
Recovered spinel MnCo 2 O 4 from spent lithium-ion batteries for enhanced electrocatalytic oxygen evolution in alkaline medium
S Natarajan, S Anantharaj, RJ Tayade, HC Bajaj, S Kundu
Dalton Transactions 46 (41), 14382-14392, 2017
762017
Should we recycle the graphite from spent lithium-ion batteries? The untold story of graphite with the importance of recycling
S Natarajan, ML Divya, V Aravindan
Journal of Energy Chemistry 71, 351-369, 2022
662022
Biomass‐derived carbon materials as prospective electrodes for high‐energy lithium‐and sodium‐ion capacitors
S Natarajan, YS Lee, V Aravindan
Chemistry–An Asian Journal 14 (7), 936-951, 2019
612019
Recovered materials from spent lithium-ion batteries (LIBs) as adsorbents for dye removal: Equilibrium, kinetics and mechanism
S Natarajan, HC Bajaj
Journal of Environmental Chemical Engineering 4 (4), 4631-4643, 2016
582016
Biomass‐derived carbon: a value‐added journey towards constructing high‐energy supercapacitors in an asymmetric fashion
ML Divya, S Natarajan, YS Lee, V Aravindan
ChemSusChem 12 (19), 4353-4382, 2019
532019
Focus on Spinel Li4Ti5O12 as Insertion Type Anode for High‐Performance Na‐Ion Batteries
S Natarajan, K Subramanyan, V Aravindan
Small 15 (49), 1904484, 2019
402019
Exploring the usage of LiCrTiO4 as cathode towards constructing 1.4 V class Li-ion cells with graphite anode recovered from spent Li-Ion battery
K Subramanyan, S Natarajan, YS Lee, V Aravindan
Chemical Engineering Journal 397, 125472, 2020
302020
Highly Reversible Na‐Intercalation into Graphite Recovered from Spent Li–Ion Batteries for High‐Energy Na‐Ion Capacitor
ML Divya, S Natarajan, YS Lee, V Aravindan
ChemSusChem 13 (21), 5654-5663, 2020
292020
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