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·인용수 45
·2024
Dual‐Seed Strategy for High‐Performance Anode‐Less All‐Solid‐State Batteries
Yeeun Sohn, Jihoon Oh, Jieun Lee, Hyunjae Kim, Insu Hwang, Gyeongho Noh, Taeyong Lee, Ji Young Kim, Ki Yoon Bae, Taegeun Lee, Nohjoon Lee, Woo Jun Chung, Jang Wook Choi
IF 26.8Advanced Materials
초록

Interest in all-solid-state batteries (ASSBs), particularly the anode-less type, has grown alongside the expansion of the electric vehicle (EV) market, because they offer advantages in terms of their energy density and manufacturing cost. However, in most anode-less ASSBs, the anode is covered by a protective layer to ensure stable lithium (Li) deposition, thus requiring high temperatures to ensure adequate Li ion diffusion kinetics through the protective layer. This study proposes a dual-seed protective layer consisting of silver (Ag) and zinc oxide (ZnO) nanoparticles for sulfide-based anode-less ASSBs. This dual-seed-based protective layer not only facilitates Li diffusion via multiple lithiation pathways over a wide range of potentials, but also enhances the mechanical stability of the anode interface through the in situ formation of a Ag-Zn alloy with high ductility. The capacity retention during full-cell evaluation is 80.8% for 100 cycles when cycled at 1 mA cm<sup>-2</sup> with 3 mAh cm<sup>-2</sup> at room temperature. The dual-seed approach provides useful insights into the design of multi-seed concepts in which, from a mechanochemical perspective, various lithiophilic materials synergistically impact upon the anode-less interface.

키워드
Materials scienceAnodeSolid-stateDual (grammatical number)NanotechnologyChemical engineeringEngineering physicsElectrodePhysical chemistry
타입
article
IF / 인용수
26.8 / 45
게재 연도
2024

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