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- W2906335503 abstract "Lithium (Li) metal has been recognized as an “ultimate” anode material for the next-generation rechargeable batteries. However, the challenges induced by Li dendrites on a working Li anode would cause cell short and expose the Li-metal batteries to wide safety concerns. The design of Li plating hosts that synergize excellent conductivity, unique nano-architecture and superb lithiophilic nature has been proven to be one of the most promising strategies to alleviate the dendrite issue of Li. Nevertheless, current 3-dimensional conductive hosts still need to be further improved to meet the vast Li deposition under high power conditions. Herein, vertical erected graphene nanowall-coated copper foams ([email protected]) prepared via plasma-enhanced chemical vapor deposition are adopted as highly lithiophilic host materials to regulate Li nucleation and suppress dendrite growth. The unique design of the [email protected] host is featured by its flexibility, huge reaction interface and ample lithiophilic sites (topological defects and oxygen-containing groups), which enables a dendrite-free morphology and a high cycling efficiency over 99.0% and excellent cycling stability up to 1875 cycles at a high current density of 5 mA cm−2. The combined advantages of the [email protected] host also guarantee the construction of [email protected]@Li||LiNi0.5Co0.2Mn0.3O2 full cells with enhanced rate capability and prolonged lifespan." @default.
- W2906335503 created "2019-01-01" @default.
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- W2906335503 date "2019-11-01" @default.
- W2906335503 modified "2023-10-15" @default.
- W2906335503 title "PECVD-derived graphene nanowall/lithium composite anodes towards highly stable lithium metal batteries" @default.
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- W2906335503 doi "https://doi.org/10.1016/j.ensm.2018.12.020" @default.
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