Li, Na, K, Mg, Zn, Al, and Ca Anode Interface Chemistries Developed by Solid-State Electrolytes

  • Shinde, Sambhaji S.
  • Wagh, Nayantara K.
  • Kim, Sung-Hae
  • Lee, Jung-Ho
Citations

WEB OF SCIENCE

100
Citations

SCOPUS

101

초록

Solid-state batteries (SSBs) have received significant attention due to their high energy density, reversible cycle life, and safe operations relative to commercial Li-ion batteries using flammable liquid electrolytes. This review presents the fundamentals, structures, thermodynamics, chemistries, and electrochemical kinetics of desirable solid electrolyte interphase (SEI) required to meet the practical requirements of reversible anodes. Theoretical and experimental insights for metal nucleation, deposition, and stripping for the reversible cycling of metal anodes are provided. Ion transport mechanisms and state-of-the-art solid-state electrolytes (SEs) are discussed for realizing high-performance cells. The interface challenges and strategies are also concerned with the integration of SEs, anodes, and cathodes for large-scale SSBs in terms of physical/chemical contacts, space-charge layer, interdiffusion, lattice-mismatch, dendritic growth, chemical reactivity of SEI, current collectors, and thermal instability. The recent innovations for anode interface chemistries developed by SEs are highlighted with monovalent (lithium (Li+), sodium (Na+), potassium (K+)) and multivalent (magnesium (Mg2+), zinc (Zn2+), aluminum (Al3+), calcium (Ca2+)) cation carriers (i.e., lithium-metal, lithium-sulfur, sodium-metal, potassium-ion, magnesium-ion, zinc-metal, aluminum-ion, and calcium-ion batteries) compared to those of liquid counterparts. Comprehensive analysis of the recent innovations in anode interface chemistries developed by solid-state and liquid electrolytes is highlighted with monovalent (Li+, Na+, K+) and multivalent (Mg2+, Zn2+, Al3+, Ca2+) cation carriers (i.e., lithium-metal, lithium-sulfur, sodium-metal, potassium-ion, magnesium-ion, zinc-metal, aluminum-ion, and calcium-ion batteries). The interface challenges and strategies for integrating solid-state electrolytes, anodes, and cathodes for large-scale SSBs are discussed.image

키워드

future perspectivesinsights for nucleation depositsinterface issuesion-transport mechanismsLi, Na, K, Mg, Zn, Al, and Ca anode interface chemistryplate/strip for reversible anodesstate-of-the-art SEsthermodynamics and chemical kineticsLITHIUM-SULFUR BATTERIESMETAL-ORGANIC FRAMEWORKSCOMPOSITE POLYMER ELECTROLYTEALUMINUM CURRENT COLLECTORELECTRICAL ENERGY-STORAGESODIUM-ION BATTERIESSPACE-CHARGE LAYERSTHIN-FILM LITHIUMINTERPHASE-LAYERROOM-TEMPERATURE
제목
Li, Na, K, Mg, Zn, Al, and Ca Anode Interface Chemistries Developed by Solid-State Electrolytes
저자
Shinde, Sambhaji S.Wagh, Nayantara K.Kim, Sung-HaeLee, Jung-Ho
DOI
10.1002/advs.202304235
발행일
2023-09
유형
Review; Early Access
저널명
Advanced Science
10
32
페이지
1 ~ 76

파일 다운로드