阳极
分离器(采油)
材料科学
化学
化学工程
物理
工程类
物理化学
电极
热力学
作者
Xiaorong Shi,Yongming Zhang,Yongsong Tan,Zhu Long,Chaoxia Wang
出处
期刊:ACS Sustainable Chemistry & Engineering
[American Chemical Society]
日期:2025-01-05
标识
DOI:10.1021/acssuschemeng.4c07557
摘要
The irregular dendrite growth and unfavorable adverse reactions on the Zn anode has emerged as a non-negligible obstacle for broad deployment of aqueous zinc-ion batteries (AZIBs). Herein, a thin and robust separator (LFP1:1) composed of lyocell fibrillated fibers and polyethylene terephthalate (PET) fibers that features a light weight, cost effectiveness, and being mass-producible is developed by a paper-making method to inhibit the undesirable adverse reactions and achieve an exceptional stable Zn anode. The LFP1:1 separator offers abundant polar functional groups, small and uniform pore structure, and high mechanical strength, which is beneficial to constructing specific migration channels for Zn2+ and suppressing adverse reactions, promoting uniform Zn deposition, and resisting dendrite penetration. As verified by the experimental results, the Zn//Zn symmetric cell furnished with the LFP1:1 separator displays prolonged lifespan up to 1452 h in 3 M Zn(CF3SO3)2 electrolyte at 1 mA·cm–2 without dendrite or byproducts, which is superior than that with GF separator. Moreover, the assembled Zn//V2O5 full cell with the LFP1:1 separator also demonstrates an outstanding cycling stability with 77.8% capacity retention at 1 A·g–1 after 1000 cycles. This work sheds light on a promising and large-scale producible method for the development of advanced separator materials for high performance AZIBs.
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