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一种分子筛电解质膜可实现无隔膜且具有超长循环寿命的锌电池。

A Molecular-Sieve Electrolyte Membrane enables Separator-Free Zinc Batteries with Ultralong Cycle Life.

作者信息

Zhu Junbo, Bie Zhe, Cai Xinxin, Jiao Zhaoyang, Wang Ziting, Tao Jingchen, Song Weixing, Fan Hong Jin

机构信息

Beijing Key Laboratory for Optical Materials and Photonic Devices, Department of Chemistry, Capital Normal University, Beijing, 100048, P. R. China.

School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore, 637371, Singapore.

出版信息

Adv Mater. 2022 Oct;34(43):e2207209. doi: 10.1002/adma.202207209. Epub 2022 Sep 25.

Abstract

The poor stability of the zinc-metal anode is a main bottleneck for practical application of aqueous zinc-ion batteries. Herein, a series of molecular sieves with various channel sizes are investigated as an electrolyte host to regulate the ionic environment of Zn on the surface of the zinc anode and to realize separator-free batteries. Based on the ZSM-5 molecular sieve, a solid-liquid mixed electrolyte membrane is constructed to uniformize the transport of zinc ions and foster dendrite-free Zn deposition. Side reactions can also be suppressed through tailoring the solvation sheath and restraining the activity of water molecules in electrolyte. A V O ||ZSM-5||Zn full cell shows significantly enhanced performance compared to cells using glass fiber separator. Specifically, it exhibits a high specific capacity of 300 mAh g , and a capacity retention of 98.67% after 1000 cycles and 82.67% after 3000 cycles at 1 A g . It is attested that zeolites (ZSM-5, H-β, and Bate) with channel sizes of 5-7 Å result in best cycle stability. Given the low cost and recyclability of the ZSM and its potent function, this work may further lower the cost and boost the industrial application of AZIBs.

摘要

锌金属负极稳定性差是水系锌离子电池实际应用的主要瓶颈。在此,研究了一系列具有不同通道尺寸的分子筛作为电解质主体,以调节锌负极表面锌离子的离子环境并实现无隔膜电池。基于ZSM-5分子筛,构建了一种固液混合电解质膜,以使锌离子传输均匀并促进无枝晶锌沉积。通过调整溶剂化鞘层和抑制电解质中水分子的活性,也可以抑制副反应。与使用玻璃纤维隔膜的电池相比,VO||ZSM-5||Zn全电池表现出显著增强的性能。具体而言,它在1 A g下具有300 mAh g的高比容量,在1000次循环后容量保持率为98.67%,在3000次循环后容量保持率为82.67%。证明通道尺寸为5-7 Å的沸石(ZSM-5、H-β和Bate)具有最佳的循环稳定性。鉴于ZSM的低成本、可回收性及其强大功能,这项工作可能会进一步降低成本并推动水系锌离子电池的工业应用。

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