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Multisite Crosslinked Poly(ether-urethane)-Based Polymer Electrolytes for High-Voltage Solid-State Lithium Metal Batteries.

Authors :
Pei F
Huang Y
Wu L
Zhou S
Kang Q
Lin W
Liao Y
Zhang Y
Huang K
Shen Y
Yuan L
Sun SG
Li Z
Huang Y
Source :
Advanced materials (Deerfield Beach, Fla.) [Adv Mater] 2024 Oct 24, pp. e2409269. Date of Electronic Publication: 2024 Oct 24.
Publication Year :
2024
Publisher :
Ahead of Print

Abstract

Utilizing solid-state polymer electrolytes (SPEs) in high-voltage Li-metal batteries is a promising strategy for achieving high energy density and safety. However, the SPEs face the challenges such as undesirable mechanical strength, low ionic conductivity and incompatible high-voltage interface. Here, a novel crosslinked poly(ether-urethane)-based SPE with a molecular cross-linked structure is fabricated to create high-throughput Li <superscript>+</superscript> transport pathway. The amino-modified Zr-porphyrin-based metal-organic frameworks (ZrMOF) are introduced as multisite cross-linking nodes and polymer chain extenders. The abundant ether/ketonic-oxygen and Lewis acid sites in the SPE achieve high Li <superscript>+</superscript> conductivity (5.7 × 10 <superscript>-4</superscript> S cm <superscript>-1</superscript> at 30 °C) and Li <superscript>+</superscript> transference number (0.84). The interpenetrating cross-linked structure of SPE with robust mechanical strength results in a record cycle life of 8000 h in Li||Li symmetric cell. The high structural stability of ZrMOF and abundant electron-withdrawing urethane/ureido groups in the SPE with high oxidation potential (5.1 V) enables a discharge capacity of 182 mAh g <superscript>-1</superscript> at 0.3 C over 500 cycles in a LiNi <subscript>0.8</subscript> Co <subscript>0.1</subscript> Mn <subscript>0.1</subscript> O <subscript>2</subscript> ||Li cell. Remarkably, a high energy density of 446 Wh kg <superscript>-1</superscript> in a 1.5-Ah pouch cell is obtained with high loading cathode (≈4 mAh cm <superscript>-2</superscript> ), demonstrating a great prospect of the current SPE for practical application in solid-state, high-voltage Li-metal batteries.<br /> (© 2024 Wiley‐VCH GmbH.)

Details

Language :
English
ISSN :
1521-4095
Database :
MEDLINE
Journal :
Advanced materials (Deerfield Beach, Fla.)
Publication Type :
Academic Journal
Accession number :
39449214
Full Text :
https://doi.org/10.1002/adma.202409269