Please use this identifier to cite or link to this item: http://hdl.handle.net/10397/107573
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Title: Constructing lithium-free anode/separator interface via 3D carbon fabric scaffold for ultrasafe lithium metal batteries
Authors: Li, D
Yang, S
Zheng, Z 
Lai, WY 
Issue Date: Nov-2023
Source: Research, 8 Nov. 2023, v. 6, 267
Abstract: Metallic lithium represents a promising anode candidate to be utilized in future high-energy lithium batteries. However, the undesirable dendrite growth and fragile solid-electrolyte interphase (SEI) pose critical challenge for pursuing further practical application. In contrast to traditional approaches of using inert/lithiophilicity coating, here, we demonstrate a reverse strategy of introducing a highly conductive and lithophobic carbon fabric (CF) scaffold on lithium foil to guide a favorable nucleation site of lithium far away from the anode/separator interface. The CF scaffold with high conductivity can couple with inner electric field for achieving a uniform distribution of the lithium-ion flux, while the lithophobic feature offers the condition to guide the preferred deposition of lithium onto the underlying lithium foil, which greatly reduces the risk of dendrite-induced short circuits. Moreover, the SEI immersed in the CF scaffold is well supported by CF fibers and therefore exhibits extremely high stability during charge–discharge cycles. As a result, the lithium/CF anodes show >2,000-h stable cycling at 0.5 mA cm−2. Lithium metal batteries equipped with our lithium/CF anode deliver a high capacity retention of ~99.99% per cycle, i.e., retain ~97.3% capacity after 200 cycles. The unique interface-regulation strategy is versatile for various conductive scaffolds (e.g., ultrathin and ultralight conductive fabrics), exhibiting high superiority for highly safe lithium metal batteries.
Publisher: American Association for the Advancement of Science (AAAS)
Journal: Research 
EISSN: 2639-5274
DOI: 10.34133/research.0267
Rights: Copyright © 2023 Dongdong Liet al. Exclusive licensee Science andTechnology Review Publishing House.No claim to original U.S. GovernmentWorks. Distributed under a CreativeCommons Attribution License 4.0(CC BY 4.0)(https://creativecommons.org/licenses/by/4.0/).
The following publication Li D, Yang S, Zheng Z,Lai WY. Constructing Lithium-FreeAnode/Separator Interface via 3DCarbon Fabric Scaffold for UltrasafeLithium Metal Batteries. Research 2023; 6:Article 0267 is available at https://doi.org/10.34133/research.0267.
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