Items where Author is "Mallick, Sourav"Group by: Item Type | No Grouping Jump to: Article Number of items: 8. ArticleMallick, Sourav ; Choutipalli, Venkata Surya Kumar ; Bag, Saheb ; Subramanian, Venkatesan ; Chellappan, Retna Raj (2022) Defect Engineered Ternary Spinel: An Efficient Cathode for an Aqueous Rechargeable Zinc-Ion Battery of Long-Term Cyclability ACS Applied Materials & Interfaces, 14 (33). pp. 37577-37586. ISSN 1944-8244 Kundu, Aniruddha ; Mallick, Sourav ; Ghora, Santanu ; Chellappan, Retna Raj (2021) Advanced oxygen electrocatalyst for air-breathing electrode in Zn-Air batteries ACS Applied Materials & Interfaces, 13 (34). pp. 40172-40199. ISSN 1944-8244 Mallick, Sourav ; Chellappan, Retna Raj (2021) Aqueous rechargeable Zn‐ion batteries: Strategies for improving the energy storage performance ChemSusChem, 14 (9). pp. 1987-2022. ISSN 1864-5631 Mallick, Sourav ; Mondal, Amit ; Chellappan, Retna Raj (2020) Rationally designed mesoporous carbon-supported Ni–NiWO4@NiS nanostructure for the fabrication of hybrid supercapacitor of long-term cycling stability Journal of Power Sources, 477 . p. 229038. ISSN 0378-7753 Samanta, Arpan ; Barman, Barun Kumar ; Mallick, Sourav ; Chellappan, Retna Raj (2020) Three-dimensional nitrogen-doped graphitic carbon-encapsulated MnO-Co heterostructure: A bifunctional energy storage material for Zn-ion and Zn–air batteries ACS Applied Energy Materials, 3 (10). pp. 10108-10118. ISSN 2574-0962 Mallick, Sourav ; Samanta, Arpan ; Chellappan, Retna Raj (2020) Mesoporous carbon-supported manganese tungstate nanostructures for the development of zinc–air battery powered long lifespan asymmetric supercapacitor Sustainable Energy & Fuels, 4 (8). pp. 4008-4017. ISSN 2398-4902 Karan, Chandan Kumar ; Mallick, Sourav ; Chellappan, Retna Raj ; Bhattacharjee, Manish (2019) A self‐healing metal–organic hydrogel for an all‐solid flexible supercapacitor Chemistry – A European Journal, 25 (65). pp. 14775-14779. ISSN 0947-6539 Mallick, Sourav ; Jana, Partha Pratim ; Chellappan, Retna Raj (2018) Asymmetric supercapacitor based on chemically coupled hybrid material of Fe2O3‐Fe3O4 heterostructure and nitrogen‐doped reduced graphene oxide ChemElectroChem, 5 (17). pp. 2348-2356. ISSN 2196-0216 |

Up a level