在高性能锌离子电池的棉布上织构(002)取向锌

IF 5.1 4区 材料科学 Q2 ELECTROCHEMISTRY
Napat Kiatwisarnkij, Zehao Song, Chanin Tangpongkitjaroen, Suttipong Wannapaiboon, Xinyu Zhang, Panyawat Wangyao, Jiaqian Qin
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引用次数: 0

摘要

锌离子电池因其优越的环境友好性和高安全性而成为传统锂离子电池的一个有前途的替代品,使其适合于各种应用的可持续能源存储。然而,人们仍然担心锌离子电池的局限性,如不受控制的枝晶生长和副反应。在本研究中,采用电镀方法在改性棉布衬底上沉积(002)平面主导纹理,该衬底由一层银导电层在一层棉支撑层之上组成。电镀电流密度和时间是制备致密致密(002)Zn织构的关键。该工艺的最佳条件是电流密度为40 mA/cm2,电镀时间为30分钟。与(101)为主的锌阳极相比,(002)为主的电极表现出更快的沉积动力学和更低的电荷转移电阻,使锌沉积更致密、更均匀。此外,(002)占主导的电极还显示出在温和的水电解质中抑制副反应的增强能力,进一步提高了锌离子电池的寿命。这项工作证明了使用普通棉布作为电镀(002)为主锌的衬底的可行性,从而扩大了锌离子电池的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Texturing (002)-Oriented Zinc Atop a Cotton Cloth for High-Performance Zn-Ion Batteries

Texturing (002)-Oriented Zinc Atop a Cotton Cloth for High-Performance Zn-Ion Batteries

Zn-ion batteries emerge as a promising alternative to conventional Li-ion batteries due to their superior environmental friendliness and high safety, making them suitable for sustainable energy storage in various applications. However, concerns persist regarding the limitations of Zn-ion batteries, such as uncontrolled dendrite growth and side reactions. In this study, the electroplating method was employed to deposit (002) plane-dominated textures on a modified cotton cloth substrate, which consists of a silver conductive layer atop a cotton supporting layer. The electroplating current density and time are critical for the fabrication of dense and compact (002) Zn textures. The optimized condition for this process involves a current density of 40 mA/cm2 and an electroplating time of 30 minutes. Compared to (101)-dominated Zn anodes, the (002)-dominated electrode demonstrates faster deposition kinetics and lower charge transfer resistance, enabling denser and more uniform Zn deposition. Additionally, the (002)-dominated electrode also exhibits an enhanced ability to inhibit side reactions in the mild aqueous electrolyte, further improving the lifespan of Zn-ion batteries. This work demonstrates the feasibility of using ordinary cotton cloth as a substrate for electroplating (002)-dominated Zn, thereby expanding the potential applications of Zn-ion batteries.

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来源期刊
CiteScore
8.60
自引率
5.30%
发文量
223
期刊介绍: Electrochemical energy storage devices play a transformative role in our societies. They have allowed the emergence of portable electronics devices, have triggered the resurgence of electric transportation and constitute key components in smart power grids. Batteries & Supercaps publishes international high-impact experimental and theoretical research on the fundamentals and applications of electrochemical energy storage. We support the scientific community to advance energy efficiency and sustainability.
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