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一种用于锌铟体相合金阳极的熔炼-轧制策略。

A smelting-rolling strategy for ZnIn bulk phase alloy anodes.

作者信息

Chai Yizhao, Xie Xuesong, He Zhangxing, Guo Guangyi, Wang Pinji, Xing Zhenyue, Lu Bingan, Liang Shuquan, Tang Yan, Zhou Jiang

机构信息

School of Materials Science and Engineering, Hunan Provincial Key Laboratory of Electronic Packaging and Advanced Functional Materials, Central South University Changsha 410083 China

School of Chemical Engineering, North China University of Science and Technology Tangshan 063009 China

出版信息

Chem Sci. 2022 Sep 20;13(39):11656-11665. doi: 10.1039/d2sc04385h. eCollection 2022 Oct 12.

Abstract

Reversibility and stability are considered as the key indicators for Zn metal anodes in aqueous Zn-ion batteries, yet they are severely hindered by uncontrolled Zn stripping/plating and side reactions. Herein, we fabricate a bulk phase ZnIn alloy anode containing trace indium by a typical smelting-rolling process. A uniformly dispersed bulk phase of the whole Zn anode is constructed rather than only a protective layer on the surface. The Zn deposition can be regarded as instantaneous nucleation due to the adsorption of the evenly dispersed indium, and formation of the exclusion zone for further nucleation can be prevented at the same time. Owing to the bulk phase structure of ZnIn alloy, the indium not only plays a crucial role in Zn deposition, but also improves the Zn stripping. Consequently, the as-designed ZnIn alloy anode can sustain stable Zn stripping/plating for over 2500 h at 4.4 mA cm with nearly 6 times smaller voltage hysteresis than that of pure Zn. Moreover, it enables a substantially stable ZnIn//NHVO battery with 96.44% capacity retention after 1000 cycles at 5 A g. This method of regulating the Zn nucleation by preparing a Zn-based alloy provides a potential solution to the critical problem of Zn dendrite growth and by-product generation fundamentally.

摘要

可逆性和稳定性被视为水系锌离子电池中锌金属负极的关键指标,然而,不受控制的锌剥离/电镀和副反应严重阻碍了它们。在此,我们通过典型的熔炼-轧制工艺制备了一种含微量铟的块状锌铟合金负极。构建了整个锌负极的均匀分散块状相,而不仅仅是表面的保护层。由于均匀分散的铟的吸附,锌沉积可视为瞬间成核,同时可防止形成进一步成核的排斥区。由于锌铟合金的块状相结构,铟不仅在锌沉积中起关键作用,还改善了锌的剥离。因此,所设计的锌铟合金负极在4.4 mA cm下可维持稳定的锌剥离/电镀超过2500小时,电压滞后比纯锌小近6倍。此外,它使锌铟//NHVO电池在5 A g下1000次循环后容量保持率达到96.44%,基本稳定。通过制备锌基合金来调节锌成核的这种方法从根本上为锌枝晶生长和副产物产生这一关键问题提供了潜在的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f640/9555725/10af434740e7/d2sc04385h-f1.jpg

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