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High-Performance Elastomeric Lithium Metal Anodes Enabled by a Lithiophilic Monolayer-Assembled Nano-Crumpled Micro-Concave Architecture

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Title
High-Performance Elastomeric Lithium Metal Anodes Enabled by a Lithiophilic Monolayer-Assembled Nano-Crumpled Micro-Concave Architecture
Issued Date
2026-07
Citation
ADVANCED ENERGY MATERIALS, v.16, no.27
Type
Article
Author Keywords
elastomeric lithium metal anodeLi dendritic growthlithium metal batteriesrenewable energy
Keywords
CURRENT COLLECTORDEPOSITIONBEHAVIORGROWTHFILMS
ISSN
1614-6832
Abstract

Li metal batteries are promising next-generation energy storage systems due to their high theoretical energy density and low redox potential. However, their practical application is limited by Li dendrite formation during repeated cycling, which compromises safety and shortens cycle life. Herein, we introduce a flexible elastomeric Li metal anode that integrates a lithiophilic monolayer-assembled nano-crumpled surface with microscale concave architectures. This hierarchical design was realized by densely assembling metal nanoparticles onto thiol-functionalized elastomer, followed by Ni electroplating and subsequent assembly with lithiophilic amine-terminated molecular linkers. The resulting elastomeric anode effectively reduced Li nucleation overpotential and promotes mossy Li deposition. As a result, symmetric cells exhibited excellent cycling stability for over 2,100 h at 3 mA cm-2/3 mAh cm-2. Moreover, Li||LiFePO4 full cells retained similar to 90.2% capacity after 1,000 cycles at 1C, demonstrating the potential of chemically and structurally engineered elastomeric anodes for durable and safe Li metal batteries.

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URI
https://scholar.dgist.ac.kr/handle/20.500.11750/60537
DOI
10.1002/aenm.71104
Publisher
WILEY-V C H VERLAG GMBH
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고용민
Ko, Yongmin고용민

Division of Energy & Environmental Technology

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