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Title
Stepwise Activation-Guided Zn Deposition for Ultra-High Capacity in Flowless Zn-Br Batteries
Issued Date
2026-03
Citation
SMALL, v.22, no.15
Type
Article
Author Keywords
bottom-to-top Zn depositionflowless Zn-Br batteriestop-platingultrahigh-capacity3D Zn host
Keywords
ZINCPERFORMANCEELECTROLYTEADDITIVES
ISSN
1613-6810
Abstract

Flowless Zn-bromine batteries (FL-ZBBs) are attracting attention as a route to overcome the inherent system-level limitations of conventional flow batteries. However, the difficulty of achieving high ZnBr2 utilization and ultra-high areal capacity jeopardize practical feasibility: Under practically relevant conditions, Zn-hosting electrodes suffer from top-plating issues and dendrite-triggered "dead" Zn accumulation, which deteriorates reversible Zn plating/stripping. This work presents a stepwise activation (SWA) electrode that guides top-plating-free, bottom-to-top sequential Zn deposition. The SWA architecture is designed by introducing insulating porous membranes physically separating stacked CF layers while electrically linking through controlled partial Zn penetration. Benefiting from SWA-guided Zn deposition, FL-ZBBs can stably retain higher Coulombic and energy efficiencies even at a high current cycling (20 mA cm-2) over 10 000 cycles. For the first time, we demonstrate a stable ultra-high capacity cycling (100 mAh cm-2) of FL-ZBB with SWA electrode by maximizing the ZnBr2 utilization (similar to 33%). This simple, scalable SWA design offers broad applicability, enabling high-capacity operation in flowless batteries and extending to other metal-deposition-limited redox systems.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/60484
DOI
10.1002/smll.202510641
Publisher
WILEY-V C H VERLAG GMBH
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김찬연
Kim, Chanyeon김찬연

Department of Energy Science and Engineering

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