Two-dimensional materials for high density, safe and robust metal anodes batteries

IF 13.4 2区 材料科学 Q1 MATERIALS SCIENCE, MULTIDISCIPLINARY Nano Convergence Pub Date : 2023-08-10 DOI:10.1186/s40580-023-00384-4
Hoilun Wong, Yuyin Li, Jun Wang, Tsz Wing Tang, Yuting Cai, Mengyang Xu, Hongliang Li, Tae-Hyung Kim, Zhengtang Luo
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引用次数: 1

Abstract

With a high specific capacity and low electrochemical potentials, metal anode batteries that use lithium, sodium and zinc metal anodes, have gained great research interest in recent years, as a potential candidate for high-energy-density storage systems. However, the uncontainable dendrite growth during the repeated charging process, deteriorates the battery performance, reduces the battery life and more importantly, raises safety concerns. With their unique properties, two-dimensional (2D) materials, can be used to modify various components in metal batteries, eventually mitigating the dendrite growth, enhancing the cycling stability and rate capability, thus leading to safe and robust metal anodes. In this paper, we review the recent advances of 2D materials and summarize current research progress of using 2D materials in the applications of (i) anode design, (ii) separator engineering, and (iii) electrolyte modifications by guiding metal ion nucleation, increasing ion conductivity, homogenizing the electric field and ion flux, and enhancing the mechanical strength for safe metal anodes. The 2D material modifications provide the ultimate solution for obtaining dendrite-free metal anodes, realizes the high energy storage application, and indicates the importance of 2D materials development. Finally, in-depth understandings of subsequent metal growth are lacking due to research limitations, while more advanced characterizations are welcome for investigating the metal deposition mechanism. The more facile and simplified preparation of 2D materials possess great prospects in high energy density metal anode batteries, and thus fulfils the development of EVs.

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用于高密度、安全和坚固的金属阳极电池的二维材料
以锂、钠、锌为阳极的金属负极电池具有高比容量和低电化学电位的特点,近年来作为高能量密度存储系统的潜在候选者,受到了广泛的关注。然而,在反复充电过程中,不可控制的枝晶生长会使电池性能恶化,降低电池寿命,更重要的是引起安全问题。二维(2D)材料具有独特的性能,可用于修饰金属电池中的各种组件,最终减轻枝晶生长,增强循环稳定性和速率能力,从而导致安全和坚固的金属阳极。本文综述了二维材料的最新进展,总结了利用二维材料在(i)阳极设计、(ii)分离器工程、(iii)通过引导金属离子成核、提高离子电导率、均匀电场和离子通量、提高安全金属阳极机械强度等方面的电解质修饰等方面的研究进展。二维材料改性为获得无枝晶金属阳极提供了最终解决方案,实现了高能量存储应用,表明了二维材料发展的重要性。最后,由于研究的限制,缺乏对后续金属生长的深入了解,而欢迎更先进的表征来研究金属沉积机制。二维材料制备更为简便,在高能量密度金属负极电池中具有广阔的应用前景,从而满足电动汽车的发展。
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来源期刊
Nano Convergence
Nano Convergence Engineering-General Engineering
CiteScore
15.90
自引率
2.60%
发文量
50
审稿时长
13 weeks
期刊介绍: Nano Convergence is an internationally recognized, peer-reviewed, and interdisciplinary journal designed to foster effective communication among scientists spanning diverse research areas closely aligned with nanoscience and nanotechnology. Dedicated to encouraging the convergence of technologies across the nano- to microscopic scale, the journal aims to unveil novel scientific domains and cultivate fresh research prospects. Operating on a single-blind peer-review system, Nano Convergence ensures transparency in the review process, with reviewers cognizant of authors' names and affiliations while maintaining anonymity in the feedback provided to authors.
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