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Three-Layer-Structured Garnet-Dominant Composite Solid Electrolyte for Solid-State Batteries

delete2026-03-20
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OA
AI
W
Wooyoung Lee
J
Jongmin Lee
S
Seohye Jeon
J
Joonsoo Kim
J
Ji Haeng Yu
K
Kyong Sik Yun
J
Jung Hyun Lee
J
Jungjoon Yoo
T
Tae Woo Kim
S
Sinho Choi
Y
Yu‐Jin Han
S
Sang‐Hoon Park
B
Boyun Jang *
D
Daeil Kim *
DOI:10.1002/cey2.70176delete
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Abstract

Abstract

En 中文
Solid-state batteries utilizing oxide, sulfide, and polymer electrolytes have garnered significant attention due to their robust safety and their applicability in high-energy-density advanced Li-ion batteries. In this study, we present an innovative three-layer-structured solid electrolyte, including the garnet-dominant composite solid electrolyte (GD-CSE) for solid-state batteries. This newly structured composite solid electrolyte (CSE) demonstrates a high ionic conductivity of around 1 mS/cm, substantial potential stability exceeding 5.0 V versus Li+/Li, and an exceptionally high Li-ion transference number of about 0.8 at room temperature. Upon evaluating its application in batteries, symmetric Li cells employing the three-layer CSE exhibit remarkable cycle stability lasting over 800 h at 0.1 mA/cm2. Furthermore, a solid-state Li-metal battery configuration (LiFePO4 (LFP)|three-layer-CSE|Li-metal) demonstrates favorable C-rate performance, achieving 63% at 5.0 C compared to 0.1 C capacity, along with an impressive cycle retention of 99% during 200 cycles at 0.5 C. Additionally, we manufacture solid-state Li-metal pouch-type cells measuring 3.4 × 5.0 cm2. These pouch-type cells offer a capacity of 4.5 mAh and exhibit secure behavior even under bending and cutting conditions.
Keywords:
composite solid electrolyte
garnet-type
solid state-batteries
three layer-structure

Journal

Carbon Energy cover
Carbon Energy
IF:
24.2
Papers:
944
Citations:
8.9K

Organization

K
Korea Institute of Energy Research
Scholars:
437
Papers: 145
Citations: 0
K
korea institute of energy research
Scholars:
481
Papers: 138
Citations: 0
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