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Dendrite-free lithium anode achieved under lean-electrolyte condition through the modification of separators with F-functionalized Ti_(3)C_(2)nanosheets 被引量:2

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摘要 An unstable solid electrolyte interphase(SEI)and chaotic lithium ion fux are key impediments to commercial high-energy-density lithium batteries because of the uncontrolled growth of rigid lithium dendrites,which would pierce through the conventional polypropylene(PP)separator,causing short circuit and safety issues.Herein,the homogenization of lithium ion fux and the generation of stable SEI layers on lithium anodes were achieved via coating a fuorine-functionalized Ti_(3)C_(2)(F-Ti_(3)C_(2))nanosheets on PP separator(F-Ti_(3)C_(2)@PP).F-Ti_(3)C_(2)nanosheets provide abundant ions pathways to homogeneously manipulate lithium ion fux and increase the Young’s modulus and electrolyte wettability of the separators.In addition,F species derived from the F-Ti_(3)C_(2)nanosheets would promote the formation of Li F-rich SEI film.The synergistic effect contribute to the uniform lithium deposition.Symmetric Li|Li,asymmetric Li|Cu and full Li|Li Fe PO4cells incorporated with the modified separators exhibit improved electrochemical performance even under lean electrolyte conditions.This work provides a feasible strategy to improve the performance of lithium batteries through both fuoridized SEI formation and lithium ion fux manipulation.
出处 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第3期366-373,I0010,共9页 能源化学(英文版)
基金 financially supported by the National Natural Science Foundation of China(21931005,21871177,20172012002) the Natural Science Foundation of Shanghai(20ZR1427600) the Shanghai Science and Technology Committee(19JC1412600)。
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