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新兴的非水铝离子电池:挑战、现状与展望。

Emerging Nonaqueous Aluminum-Ion Batteries: Challenges, Status, and Perspectives.

机构信息

College of Materials Sciences and Engineering, Beijing University of Technology, Beijing, 100124, China.

State Key Laboratory of Multiphase Complex Systems, Institute of Process Engineering, Chinese Academy of Sciences, Beijing, 100190, China.

出版信息

Adv Mater. 2018 Sep;30(38):e1706310. doi: 10.1002/adma.201706310. Epub 2018 Jun 19.

Abstract

Aluminum-ion batteries (AIBs) are regarded as viable alternatives to lithium-ion technology because of their high volumetric capacity, their low cost, and the rich abundance of aluminum. However, several serious drawbacks of aqueous systems (passive film formation, hydrogen evolution, anode corrosion, etc.) hinder the large-scale application of these systems. Thus, nonaqueous AIBs show incomparable advantages for progress in large-scale electrical energy storage. However, nonaqueous aluminum battery systems are still nascent, and various technical and scientific obstacles to designing AIBs with high capacity and long cycling life have not been resolved until now. Moreover, the aluminum cell is a complex device whose energy density is determined by various parameters, most of which are often ignored, resulting in failure to achieve the maximum performance of the cell. The purpose here is to discuss how to further develop reliable nonaqueous AIBs. First, the current status of nonaqueous AIBs is reviewed based on statistical data from the literature. The influence of parameters on energy density is analyzed, and the current situation and existing problems are summarized. Furthermore, possible solutions and concerns regarding the construction of reliable nonaqueous AIBs are comprehensively discussed. Finally, future research directions and prospects in the aluminum battery field are proposed.

摘要

铝离子电池(AIB)因其高体积容量、低成本和丰富的铝资源而被认为是锂离子技术的可行替代品。然而,水系(钝化膜形成、析氢、阳极腐蚀等)存在一些严重的缺陷,阻碍了这些体系的大规模应用。因此,非水系 AIB 在大规模储能方面具有无与伦比的优势。然而,非水系铝电池系统仍处于起步阶段,目前仍未解决设计具有高容量和长循环寿命的 AIB 所面临的各种技术和科学障碍。此外,铝电池是一个复杂的装置,其能量密度取决于各种参数,其中大多数参数通常被忽略,导致电池无法实现最大性能。本文旨在讨论如何进一步开发可靠的非水系 AIB。首先,基于文献中的统计数据,综述了非水系 AIB 的现状。分析了参数对能量密度的影响,总结了现状和存在的问题。此外,还全面讨论了构建可靠的非水系 AIB 的可能解决方案和关注点。最后,提出了铝电池领域的未来研究方向和前景。

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