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Lithiophilic interface guided transient infiltration of molten lithium for stable 3D composite lithium anodes 被引量:1
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作者 lan-xing li Yun-Nuo li +1 位作者 Fei-Fei Cao Huan Ye 《Nano Research》 SCIE EI CSCD 2023年第6期8297-8303,共7页
Fabricating three-dimensional(3D)composite lithium anodes via thermal infusion effectively addresses uncontrollable Li deposition and large volume changes.However,potential risks due to the long wetting time and high ... Fabricating three-dimensional(3D)composite lithium anodes via thermal infusion effectively addresses uncontrollable Li deposition and large volume changes.However,potential risks due to the long wetting time and high melting point remain a critical yet unconsidered issue.Herein,we report a stable 3D composite Li anode by infusing molten Li into a 3D scaffold within 3 s at 220℃.The key-enabling technique is the growth of a lithiophilic Mg-Al double oxide(LDO)nanosheet array layer on the scaffold.The in-situ formed lithiophilic alloy,combined with the capillary forces from the nanosheet arrays,enabled the transient infiltration of molten Li.In addition,the formed high ionic-conductivity Li phase can help construct a robust solid electrolyte interphase(SEI),stabilize the Li anode/electrolyte interface,and guide uniform Li deposition.The 3D composite anode exhibited a long cycling life of 1,000 h under a current density of 1 mA·cm^(−2)and over 1,600 h under a current density of 2 mA·cm^(−2)with a high areal capacity of 4 mAh·cm^(−2)in Li/Li symmetric cells.The 3D composite anodes paired with high areal capacity LiFePO_(4)(LFP)and S cathodes demonstrate its practical application feasibility. 展开更多
关键词 lithium metal battery composite Li anode interfacial layer thermal infusion long cycling life
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