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Bhanu Ranjan
Bhanu Ranjan
IIT Roorkee, Department of Physics
在 ph.iitr.ac.in 的电子邮件经过验证
标题
引用次数
引用次数
年份
Two-dimensional MoS2 reinforced with Cu3N nanoflakes prepared via binder less sputtering route for flexible supercapacitor electrodes
GK Sharma, B Ranjan, D Kaur
Applied Physics Letters 118 (20), 2021
412021
Tuning growth of MoS2 nanowires over NiTiCu nanostructured array for flexible supercapacitive electrodes with enhanced Li-ion storage
B Ranjan, GK Sharma, D Kaur
Applied Physics Letters 118 (22), 2021
352021
Electrochemical kinetics of 2D-MoS2 sputtered over stainless-steel mesh: Insights into the Na+ ions storage for flexible supercapacitors
GK Sharma, B Ranjan, D Kaur
Ceramics International 48 (16), 23404, 2022
212022
Remotely tuned multistate resistive switching in MoS2/NiMnIn thin film heterostructure for highly flexible ReRAM application
K Kaushlendra, P Kumar, D Arora, B Ranjan, D Kaur
Ceramics International 49 (6), 9543, 2023
202023
In-situ sputtered 2D-MoS2 nanoworms reinforced with molybdenum nitride towards enhanced Na-ion based supercapacitive electrodes
B Ranjan, GK Sharma, G Malik, A Kumar, D Kaur
Nanotechnology 32 (45), 455402, 2021
192021
Estimating Li-ion storage in semiconducting nanocomposite of 2D-MoS2 decorated aluminum nitride nanoflowers for flexible electrodes of supercapacitors
GK Sharma, B Ranjan, D Kaur
Applied Physics Letters 121 (1), 2022
172022
Pseudocapacitive storage in molybdenum oxynitride nanostructures reactively sputtered on stainless‐steel mesh towards an all‐solid‐state flexible supercapacitor
B Ranjan, D Kaur
Small 20 (20), 2307723, 2024
152024
Rationally synthesized Mo2N nanopyramids for high-performance flexible supercapacitive electrodes with deep insight into the Na-ion storage mechanism
B Ranjan, GK Sharma, D Kaur
Applied Surface Science 588, 152925, 2022
152022
Achieving enhanced pseudocapacitance in MoS2 nanowires rationally sputtered over NiMnIn shape memory alloy for flexible Na-ion supercapacitor
B Ranjan, D Kaur
Journal of Energy Storage 71, 108122, 2023
142023
Pseudocapacitive performance of reactively co-sputtered titanium chromium nitride nanopyramids towards flexible supercapacitor with Li-ion storage
R Kumar, B Ranjan, D Kaur
Journal of Energy Storage 84, 110866, 2024
52024
Pseudocapacitive Kinetics in Synergistically Coupled MoS2–Mo2N Nanowires with Enhanced Interfaces toward All-Solid-State Flexible Supercapacitors
B Ranjan, D Kaur
ACS Applied Materials & Interfaces 16 (12), 14890–14901, 2024
32024
Pseudocapacitance Powered Nickel Molybdenum Nitride Nanocomposite Reactively Cosputtered on Stainless-Steel Mesh toward Advanced Flexible Supercapacitors
B Ranjan, D Kaur
ACS Applied Energy Materials 7 (10), 4513–4527, 2024
22024
Ti–Cr–N Nanopyramid/Nitrogen-Doped Carbon Quantum Dot/Stainless Steel Mesh as a Flexible Supercapacitor Electrode
R Kumar, B Ranjan, K Kumar, S Shankhdhar, D Kaur
ACS Applied Nano Materials 7 (7), 7663-7673, 2024
22024
Tuning growth of MoS2 nanowires over NiTiCu nanostructured array for flexible supercapacitive electrode with enhanced Li-ion storage
B Ranjan, GK Sharma, D Kaur
Applied Physics Letters 118 (22), 2021
12021
A Flexible Supercapacitor of Molybdenum Nickel Nitride (Mo-Ni-N) for High-Energy Density Storage Application and Preparation Method thereof
B Ranjan, D Kaur
IN Patent App. IN202,311,061,534, 2023
2023
Nanowires in-situ sputtered with Molybdenum Nitride Nanoflakes for high-performance Na-ion Supercapacitors
B RANJAN
IIT Roorkee, 2023
2023
Pseudocapacitive Na+-ion storage in Flexible Thin Film Electrodes (TFEs) of Mo2N nanopyramids: Unveiling the Electrochemical energy storage mechanism
B RANJAN, D KAUR
International Conference of Battery Science and Technology 2022 ( ICBST'2022), 2023
2023
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