4.8 Article

Solid polymer electrolyte soft interface layer with 3D lithium anode for all-solid-state lithium batteries

Journal

ENERGY STORAGE MATERIALS
Volume 17, Issue -, Pages 309-316

Publisher

ELSEVIER
DOI: 10.1016/j.ensm.2018.07.004

Keywords

lithium metal batteries; Solid polymer electrolyte; 3D lithium anode; Soft interface layer; Solid-state garnet electrolyte

Funding

  1. National Natural Science Foundation of China [51532002]
  2. Beijing Natural Science Foundation [L172023]
  3. National Basic Research Program of China [2018YFB0104300]
  4. Shandong Distinguished Taishan Scholar project

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Garnet electrolyte-based lithium (Li) metal batteries, which employ garnet-type Li7La3Zr2O12 (LLZO) as electrolyte and Li metal as anode, are regarded as a promising candidate for high-energy batteries. However, Li dendrites formation as well as poor solid-solid contact between the electrolyte and electrodes result in high interfacial resistance, large polarizations, and low Coulombic efficiency. Herein, we demonstrated that solid polymer electrolyte (SPE) soft interface layer deposited on garnet electrolyte (Ta-doped LLZO (LLZTO)) surface along with 3D Li metal anode can address these obstacles. In this architecture, SPE layer was deposited on garnet electrolyte surface to endow connected interface between the electrolyte and electrodes and thus settled the interface contact issue. 3D Li metal anode can accomplish dendrite-suppression by increasing Li ions deposition sites to lower the effective current density and render a uniform Li nucleation with 3D frameworks. With this ingenious arrangement, the solid-state 3D Li vertical bar SPE-LLZTO-SPE vertical bar 3D Li symmetrical cell exhibits a stable voltage profile over 700 h and solid-state LiFePO4 vertical bar SPE-LLZTO-SPE vertical bar 3D Li full cell also shows an extremely superior cyclability and high Coulombic efficiency even at 90 degrees C. This work provides an alternative option for manufacturing safe and stable solid-state Li metal batteries.

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