Hierarchical Electrodes: Advanced Design strategies and Engineering for Na-ion Battery
Implementing Organization
National Institute of Technology (Agartala), Tripura
Principal Investigator
Dr. suresh Mamidi
National Institute of Technology (Agartala), Tripura
About
Lithium-ion batteries (LiB) are promising energy storage devices with high energy density and long cycle life, but their growth and widespread adoption in India are hindered by material scarcity and high cost. On the other hand, sodium-ion batteries (NiB) have gained attention due to their abundant resources at a much cheaper cost. This could eliminate the geopolitical supply crisis associated with current LiB technology. Hard carbon-based hierarchical electrodes and carbon-metal oxide composites can be tested as anodes in NiB batteries, offering advantages such as high surface area electrodes, shorter ion diffusion path lengths, high specific capacities, and better storage kinetics. The fabrication of binder-free hierarchical electrodes eliminates the use of harmful organic solvents. The proposed electrode design may significantly improve the storage capabilities of anodes in NiB. The objectives of this project include optimizing fabrication parameters, synthesizing hard carbons and hard carbon-metals oxide composites for hybrid anode electrodes, characterizing materials using various analytical techniques, evaluating electrochemical characteristics, and demonstrating coin cell prototypes. This project is significant in the Indian research field, as it is expected to produce new dimensions of using 3D high surface area electrodes and carbon-metal oxide composite electrodes for NiB. Based on resource availability and cost, NiB is preferred for testing these 3D hierarchical electrode and carbon metal composite anode systems.
Source
Source
Anusandhan National Research Foundation/science and Engineering Research Board (sERB), DsT 2023-24
Science and Engineering Research Board (SERB), New Delhi
Anusandhan National Research Foundation (ANRF)
Quick Information
Area of Research
Engineering Sciences
Start Year
2023
End Year
2025
Sanction Amount
₹ 29.82 L
Status
Completed
Contact
ch14m16p000003@iith.ac.in
Output
No. of Research Paper
00
Technologies (If Any)
00
No. of PhD Produced
00
No. of Patents
Filed :00
Grant :00
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