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A dicarbonate solvent electrolyte for high performance 5 V-Class Lithium-based batteries. | LitMetric

AI Article Synopsis

  • New rechargeable lithium batteries with 5V positive electrode materials offer higher energy density than current lithium-ion batteries, but struggle with electrolyte stability.
  • A novel electrolyte made from dimethyl 2,5-dioxahexanedioate solvent enables stable lithium plating and can operate up to 5.2V while maintaining low salt concentration.
  • Cells using this new electrolyte maintain over 97% capacity after 250 cycles, showing improved performance compared to traditional carbonate-based electrolytes, suggesting promising advancements for future lithium battery technology.

Article Abstract

Rechargeable lithium batteries using 5 V positive electrode materials can deliver considerably higher energy density as compared to state-of-the-art lithium-ion batteries. However, their development remains plagued by the lack of electrolytes with concurrent anodic stability and Li metal compatibility. Here we report a new electrolyte based on dimethyl 2,5-dioxahexanedioate solvent for 5 V-class batteries. Benefiting from the particular chemical structure, weak interaction with lithium cation and resultant peculiar solvation structure, the resulting electrolyte not only enables stable, dendrite-free lithium plating-stripping, but also displays anodic stability up to 5.2 V (vs. Li/Li), in additive or co-solvent-free formulation, and at low salt concentration of 1 M. Consequently, the Li | |LiNiMnO cells using the 1 M LiPF in 2,5-dioxahexanedioate based electrolyte retain >97% of the initial capacity after 250 cycles, outperforming the conventional carbonate-based electrolyte formulations, making this, and potentially other dicarbonate solvents promising for future Lithium-based battery practical explorations.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10789778PMC
http://dx.doi.org/10.1038/s41467-024-44858-3DOI Listing

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