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通过用于高性能水系锌离子电池的离子筛分纳米多孔纤维素隔膜调控锌沉积

Regulating Zn deposition via an ion-sieving, nanoporous cellulose separator for high performance aqueous zinc-ion batteries.

作者信息

Shi Xiaorong, Tan Yongsong, Zhang Yongming, Long Zhu, Wang Chaoxia, Dai Lei, Dong Cuihua

机构信息

College of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, Jiangsu, PR China.

College of Textile Science and Engineering, Jiangnan University, Wuxi, 214122, Jiangsu, PR China.

出版信息

Int J Biol Macromol. 2025 Jan;287:138542. doi: 10.1016/j.ijbiomac.2024.138542. Epub 2024 Dec 9.

Abstract

Aqueous zinc-ion batteries (AZIBs), one of the most promising renewable energy storage devices, are largely impeded by the disreputable cycling stability in its large-scale application as a result of the undesirable Zn dendrites growth and the side reactions. In this context, a carboxylate (-COO) anionic group functionalized cellulose nanofibrils separator (A-CNF) with nanoporous structure and ion-sieving effect is developed to realize a stable Zn anode without dendrites and by-products. An increased Zn transference number and uniform Zn deposition can be achieved through the electrostatic adsorption between -COO and Zn. More importantly, the synergistic effect between -COO and hydroxyl group (-OH) in the cellulose nanofibrils separator inhibits the occurrence of side reactions caused by SO and free water molecules. As a result, the nanoporous separator consisting of carboxylated cellulose nanofibrils enables Zn anode with high stability and utilization, exhibiting a stable cycling life for 950 h in Zn//Zn cell and an admirable coulombic efficiency of 98.9 % after 300 cycles in Zn//Cu cell. The assembled Zn//MnO full cell with the nanoporous cellulose nanofibrils-based separator shows exceptional cyclability and capacity retention after 1000 cycles. This work provides a valuable and practical separator for high performance AZIBs, which might spur its practical application.

摘要

水系锌离子电池(AZIBs)作为最具前景的可再生储能装置之一,由于锌枝晶生长不良和副反应,其大规模应用中的循环稳定性不佳,受到了很大阻碍。在此背景下,开发了一种具有纳米多孔结构和离子筛分效应的羧酸盐(-COO)阴离子基团功能化纤维素纳米纤丝隔膜(A-CNF),以实现无枝晶和副产物的稳定锌阳极。通过-COO与锌之间的静电吸附,可以提高锌迁移数并实现锌的均匀沉积。更重要的是,纤维素纳米纤丝隔膜中-COO与羟基(-OH)之间的协同效应抑制了由SO和游离水分子引起的副反应的发生。结果,由羧化纤维素纳米纤丝组成的纳米多孔隔膜使锌阳极具有高稳定性和利用率,在Zn//Zn电池中表现出950小时的稳定循环寿命,在Zn//Cu电池中300次循环后具有令人钦佩的98.9%的库仑效率。组装的具有基于纳米多孔纤维素纳米纤丝隔膜的Zn//MnO全电池在1000次循环后显示出优异的循环性能和容量保持率。这项工作为高性能水系锌离子电池提供了一种有价值且实用的隔膜,这可能会推动其实际应用。

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