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Chemistry of Materials· 2026Q1

Erimiş Tuz, Daha Güvenli ve Yoğun Çift İyonlu Piller Sağlıyor

Anion and Cation (Co-)intercalation Behavior from an Inorganic Molten Salt for Dual-Ion Batteries

Hrishikesh S. Srinivasan, Seunga Heo, Emily S. Doyle, Chibueze V. Amanchukwu

Kısa özet

Yeni bir erimiş tuz elektroliti, hem anyonların hem de katyonların grafit katotlara intercalasyonunu sağlayarak daha güvenli ve yüksek enerjili "Karbon-ve-Tuz" pillerini mümkün kılıyor.

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Özet (abstract)

Abstract Long-duration energy storage is needed to accelerate decarbonization. Lithium-ion batteries are currently state-of-the-art but require costly transition metal oxide cathodes, which can limit their scalability. Dual-graphite batteries are a promising chemistry featuring a graphite anode and graphite cathode, where cation and anion intercalation occur at the former and latter electrodes, respectively. Conventional small-molecule-based electrolytes face safety issues due to their flammability and volatility, and they limit the energy density of dual-graphite batteries due to the presence of species other than the active ions. Molten salt electrolytes are thus a promising alternative to conventional dual-graphite battery electrolytes due to their intrinsic safety and energy density. Here, we report the investigation of a low-melting, single-cation imide-based binary molten salt electrolyte to enable “Carbon-and-Salt” batteries. We find that both anions in the Li(FSI)x(FTFSI)1–x electrolytes that were studied reversibly intercalate into graphite cathodes, but that FTFSI– preferentially intercalates and is present in greater compositions in anion-graphite intercalation compounds compared to the bulk electrolytes. Furthermore, we find that lithium co-intercalates with the anions, suggesting the inability of anions to fully de-solvate from tightly-bound aggregate networks. The systematic investigation of anion and cation (co-)intercalation behavior from imide-based molten salts is important to guide the design of next-generation solvent-free and transition-metal-free “Carbon-and-Salt” batteries.

Yazarların özeti; kaynağından alınmıştır. Chemistry of Materials, 2026 · DOI ↗

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