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Novel in situ SEI fabrication on Zn anodes for ultra-high current density tolerance enabled by electrical excitation–conjugation of iminoacetonitriles

Novel situ SEI fabrication Zn is a B.Tech project topic for Electrical Engineering. Explore the IEEE-style abstract, reference paper, PDF link, tools…

Novel situ SEI fabrication Zn is a B.Tech project topic for Electrical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.

Novel situ SEI fabrication Zn Project Details

Abstract

This project looks at making a very stable zinc (Zn) anode surface for aqueous zinc‑ion batteries. The goal is to stop dendrite growth and unwanted side reactions. The approach creates a protective solid‑electrolyte interphase (SEI) directly on the Zn anode during operation. First, an electrical‑excitation reaction adds iminoacetonitrile (IDAN) to the zinc surface. The IDAN then reacts with Zn²⁺ ions to form iminodiacetic acid (IDA) complexes, which become the SEI layer. Because the SEI forms in place, it speeds up Zn²⁺ ion transport, blocks water molecules from reaching the metal, and keeps the electrode‑electrolyte interface stable even at very high current densities. The project also helps design the electrochemical cell,

set the electrodeposition conditions, and study how the interface stays stable. Performance is checked with systematic electrochemical tests, including galvanostatic charge‑discharge cycling and electrochemical impedance spectroscopy. These results give useful guidance for building fast‑charging, long‑lasting aqueous energy‑storage systems that could be used on the power grid.

Reference Paper Novel in situ SEI fabrication on Zn anodes for ultra-high current density tolerance enabled by electrical excitation–conjugation of iminoacetonitriles
Domain Energy Storage Systems
Sub-Domain Electrical & Electronics Engineering
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