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High-performance all-solid-state batteries enabled by salt bonding to perovskite in poly(ethylene oxide).
Xu, Henghui; Chien, Po-Hsiu; Shi, Jianjian; Li, Yutao; Wu, Nan; Liu, Yuanyue; Hu, Yan-Yan; Goodenough, John B.
Afiliação
  • Xu H; Materials Science and Engineering Program, The University of Texas at Austin, Austin, TX 78712.
  • Chien PH; Texas Materials Institute, The University of Texas at Austin, Austin, TX 78712.
  • Shi J; Department of Chemistry and Biochemistry, Florida State University, Tallahassee, FL 32306.
  • Li Y; Center of Interdisciplinary Magnetic Resonance, National High Magnetic Field Laboratory, Tallahassee, FL 32310.
  • Wu N; Materials Science and Engineering Program, The University of Texas at Austin, Austin, TX 78712.
  • Liu Y; Texas Materials Institute, The University of Texas at Austin, Austin, TX 78712.
  • Hu YY; Materials Science and Engineering Program, The University of Texas at Austin, Austin, TX 78712; lytthu@utexas.edu jgoodenough@mail.utexas.edu.
  • Goodenough JB; Texas Materials Institute, The University of Texas at Austin, Austin, TX 78712.
Proc Natl Acad Sci U S A ; 116(38): 18815-18821, 2019 Sep 17.
Article em En | MEDLINE | ID: mdl-31467166
ABSTRACT
Flexible and low-cost poly(ethylene oxide) (PEO)-based electrolytes are promising for all-solid-state Li-metal batteries because of their compatibility with a metallic lithium anode. However, the low room-temperature Li-ion conductivity of PEO solid electrolytes and severe lithium-dendrite growth limit their application in high-energy Li-metal batteries. Here we prepared a PEO/perovskite Li3/8Sr7/16Ta3/4Zr1/4O3 composite electrolyte with a Li-ion conductivity of 5.4 × 10-5 and 3.5 × 10-4 S cm-1 at 25 and 45 °C, respectively; the strong interaction between the F- of TFSI- (bis-trifluoromethanesulfonimide) and the surface Ta5+ of the perovskite improves the Li-ion transport at the PEO/perovskite interface. A symmetric Li/composite electrolyte/Li cell shows an excellent cyclability at a high current density up to 0.6 mA cm-2 A solid electrolyte interphase layer formed in situ between the metallic lithium anode and the composite electrolyte suppresses lithium-dendrite formation and growth. All-solid-state Li|LiFePO4 and high-voltage Li|LiNi0.8Mn0.1Co0.1O2 batteries with the composite electrolyte have an impressive performance with high Coulombic efficiencies, small overpotentials, and good cycling stability.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2019 Tipo de documento: Article