Composition-Controlled Cathode Protective Layer via Powder-Atomic Layer Deposition for All-Solid-State Batteries

  • Kwon, Kyu Moon
  • Kim, Dae Ho
  • Kwon, Ha Yeon
  • Park, Joungwon
  • Kim, Kyoung Hwan
  • ... Park, Tae Joo
  • 외 2명
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초록

Controlling the ionic and electronic conductivities of the protective layers on cathode active materials (CAMs) is critical for interface stabilization with sulfide-based solid electrolytes in all-solid-state batteries (ASSBs). In this study, lithium zirconium oxide layers with varying compositions are grown on LiNi0.8Co0.1Mn0.1O2 using an O3-based atomic layer deposition process. The ionic conductivity reaches 2.20 x 10-7 S cm-1 at 25 degrees C, and the electronic conductivity ranges from 10-10 to 10-7 S cm-1 depending on composition. These composition-dependent transport properties directly affect electrochemical performance, leading to a 4.5% difference in initial Coulombic efficiency and a 37% difference in long-term retention. Compared to their uncoated counterparts, the coated CAMs exhibited 6.7% and 43% increases in initial efficiency and capacity retention of the cells, respectively. This study establishes a quantitative correlation between the protective layer's composition and battery performance, emphasizing that composition control is a key strategy for interfacial engineering in sulfide-based ASSBs.

키워드

all-solid-state batteriesatomic layer depositioncathode protective layerlithium zirconium oxidepowder ALDINTERFACESCOATINGSFILMS
제목
Composition-Controlled Cathode Protective Layer via Powder-Atomic Layer Deposition for All-Solid-State Batteries
저자
Kwon, Kyu MoonKim, Dae HoKwon, Ha YeonPark, JoungwonKim, Kyoung HwanPark, Hwi-YeolKang, Hyo RangPark, Tae Joo
DOI
10.1002/advs.202514583
발행일
2025-10
유형
Article; Early Access
저널명
Advanced Science
13
4