Interface Stabilization of Aqueous Aluminum Batteries via Non-Flammable Co-Solvent

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초록

Aqueous aluminum-ion batteries (AAIBs) face significant challenges due to interfacial instability and parasitic side reactions during the reversible deposition of aluminum. Here, we introduce a hybrid electrolyte incorporating triethyl phosphate (TEP), a non-flammable co-solvent that reconstructs the Al3+ solvation environment by suppressing water activity. This design extends the electrochemical stability window and enables uniform Al-Zn alloy formation at the anode interface. As a result, symmetric Al-Zn cells achieve over 4000 h of stable cycling. In full-cell configurations with V2O5/C cathodes, the system demonstrates high capacity retention (similar to 96% over 450 cycles at 2 A g(-1)) and coulombic efficiency. This work underscores the potential of solvation structure engineering via functional, flame-retarding co-solvent to advance the development of safe and durable aqueous electrolytes.

키워드

aqueous batteriesaqueous aluminum-ion batterieselectrolytesaluminum anodealloyRAMAN-SPECTROSCOPYALLOY NANOWIRESZNPHOSPHATESWATERSAFE
제목
Interface Stabilization of Aqueous Aluminum Batteries via Non-Flammable Co-Solvent
저자
Kim, Keun-il
DOI
10.3390/batteries11090324
발행일
2025-08
유형
Article
저널명
BATTERIES-BASEL
11
9

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