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Progress and Prospects of Inorganic Solid-State Electrolyte-Based All-Solid-State Pouch Cells

Journal Article · · Advanced Materials
 [1];  [2];  [3];  [2]
  1. Univ. of Western Ontario, London, ON (Canada); Univ. of Maryland, College Park, MD (United States); OSTI
  2. Univ. of Western Ontario, London, ON (Canada)
  3. Univ. of Maryland, College Park, MD (United States)
Here, all-solid-state batteries have piqued global research interest because of their unprecedented safety and high energy density. Significant advances have been made in achieving high room-temperature ionic conductivity and good air stability of solid-state electrolytes (SSEs), mitigating the challenges at the electrode–electrolyte interface, and developing feasible manufacturing processes. Along with the advances in fundamental study, all-solid-state pouch cells using inorganic SSEs have been widely demonstrated, revealing their immense potential for industrialization. This review provides an overview of inorganic all-solid-state pouch cells, focusing on ultrathin SSE membranes, sheet-type thick solid-state electrodes, and bipolar stacking. Moreover, several critical parameters directly influencing the energy density of all-solid-state Li-ion and lithium–sulfur pouch cells are outlined. Finally, perspectives on all-solid-state pouch cells are provided and specific metrics to meet certain energy density targets are specified. This review looks to facilitate the development of inorganic all-solid-state pouch cells with high energy density and excellent safety.
Research Organization:
Univ. of Maryland, College Park, MD (United States)
Sponsoring Organization:
USDOE; USDOE Office of Energy Efficiency and Renewable Energy (EERE)
Grant/Contract Number:
EE0008856
OSTI ID:
2418050
Alternate ID(s):
OSTI ID: 1963334
Journal Information:
Advanced Materials, Journal Name: Advanced Materials Journal Issue: 19 Vol. 35; ISSN 0935-9648
Publisher:
WileyCopyright Statement
Country of Publication:
United States
Language:
English

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