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Narad Barman
Narad Barman
Research Scholar at SRM University AP
在 srmap.edu.in 的电子邮件经过验证
标题
引用次数
引用次数
年份
Controlling the metal–ligand coordination environment of manganese phthalocyanine in 1D–2D heterostructure for enhancing nitrate reduction to ammonia
A Adalder, S Paul, N Barman, A Bera, S Sarkar, N Mukherjee, R Thapa, ...
ACS Catalysis 13 (20), 13516-13527, 2023
522023
Hierarchical architecture of the metallic VTe 2/Ti 3 C 2 T x MXene heterostructure for supercapacitor applications
SR KA, N Barman, S Radhakrishnan, R Thapa, CS Rout
Journal of Materials Chemistry A 10 (44), 23590-23602, 2022
392022
Fe (TCNQ) 2 nanorod arrays: an efficient electrocatalyst for electrochemical ammonia synthesis via the nitrate reduction reaction
N Mukherjee, A Adalder, N Barman, R Thapa, R Urkude, B Ghosh, ...
Journal of Materials Chemistry A 12 (6), 3352-3361, 2024
312024
Identification of ORR activity of random graphene-based systems using the general descriptor and predictive model equation
S Kapse, N Barman, R Thapa
Carbon 201, 703-711, 2023
172023
Design and fabrication of cobaltx nickel (1-x) telluride microfibers on nickel foam for battery-type supercapacitor and oxygen evolution reaction study
P Bhol, SA Patil, N Barman, EE Siddharthan, R Thapa, M Saxena, ...
Materials Today Chemistry 30, 101557, 2023
152023
CrSe 2/Ti 3 C 2 MXene 2D/2D hybrids as promising candidates for energy storage applications
SR KA, N Barman, K Namsheer, R Thapa, CS Rout
Sustainable Energy & Fuels 6 (22), 5187-5198, 2022
112022
Design and fabrication of nickel lanthanum telluride microfibers for redox additive electrolyte-based flexible solid-state hybrid supercapacitor
P Bhol, PB Jagdale, N Barman, R Thapa, M Saxena, AK Samal
Journal of Energy Storage 65, 107286, 2023
82023
Magneto‐Electrochemical Ammonia Synthesis: Boosting Nitrite Reduction Activity by the Optimized Magnetic Field Induced Spin Polarized System
A Adalder, K Mitra, N Barman, R Thapa, S Bhowmick, UK Ghorai
Advanced Energy Materials 14 (42), 2403295, 2024
52024
Large-area ultrathin 2D Co (OH) 2 nanosheets: a bifunctional electrode material for supercapacitor and water oxidation
PB Jagdale, SA Patil, A Sfeir, N Barman, A Iqbal, S Royer, R Thapa, ...
Materials Today Energy 44, 101608, 2024
52024
Deciphering the bridge oxygen vacancy-induced cascading charge effect for electrochemical ammonia synthesis
A Biswas, N Barman, A Nambron, R Thapa, K Sudarshan, RS Dey
Materials Horizons 11 (9), 2217-2229, 2024
32024
Beyond Conventional Catalysts: Monoelemental Tellurium as a Game Changer for Piezo‐Driven Hydrogen Evolution
HK Mishra, Ankush, N Barman, B Mondal, M Jha, R Thapa, D Mandal
Small, 2402421, 2024
22024
Boosting Selective Nitrogen Oxidation to Nitric Acid by Synergizing Cobalt Phthalocyanine on Carbon Nitride Surface
S Paul, A Adalder, N Barman, R Thapa, A Bera, K Mitra, UK Ghorai
Advanced Functional Materials, 2408314, 2024
22024
Ultrathin, large area β-Ni (OH) 2 crystalline nanosheet as bifunctional electrode material for charge storage and oxygen evolution reaction
SA Patil, PB Jagdale, N Barman, A Iqbal, A Sfeir, S Royer, R Thapa, ...
Journal of Colloid and Interface Science 674, 587-602, 2024
12024
Transient Electro‐Graphitization of MOFs Affecting the Crystallization of Ruthenium Nanoclusters for Highly Efficient Hydrogen Evolution
GM Karim, A Patra, SK Deb, H Upadhya, S Das, P Mukherjee, W Ahmad, ...
Advanced Functional Materials, 2315460, 2024
12024
Magneto‐Electrochemical Ammonia Synthesis: Boosting Nitrite Reduction Activity by the Optimized Magnetic Field Induced Spin Polarized System (Adv. Energy Mater. 42/2024)
A Adalder, K Mitra, N Barman, R Thapa, S Bhowmick, UK Ghorai
Advanced Energy Materials 14 (42), 2470185, 2024
2024
Leveraging Soft Acid‐Base Interactions Alters the Pathway for Electrochemical Nitrogen Oxidation to Nitrate with High Faradaic Efficiency
R Singh, A Biswas, N Barman, M Iqbal, R Thapa, RS Dey
Small, 2406718, 2024
2024
Electronic Descriptor to Identify the Activity of SACs for E‐NRR and Effect of BF3 as Electrolyte Ion
N Barman, S Kapse, R Thapa
ChemSusChem, e202400902, 0
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