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室温钠离子硫电池研究进展综述。

Research Progress toward Room Temperature Sodium Sulfur Batteries: A Review.

机构信息

National and Local Joint Engineering Laboratory for Lithium-Ion Batteries and Materials Preparation Technology, Key Laboratory of Advanced Battery Materials of Yunnan Province, Faculty of Metallurgical and Energy Engineering, Kunming University of Science and Technology, Kunming 650093, China.

National and Local Joint Engineering Laboratory for Lithium-Ion Batteries and Materials Preparation Technology, Key Laboratory of Advanced Battery Materials of Yunnan Province, Faculty of Materials Science and Engineering, Kunming University of Science and Technology, Kunming 650093, China.

出版信息

Molecules. 2021 Mar 11;26(6):1535. doi: 10.3390/molecules26061535.

Abstract

Lithium metal batteries have achieved large-scale application, but still have limitations such as poor safety performance and high cost, and limited lithium resources limit the production of lithium batteries. The construction of these devices is also hampered by limited lithium supplies. Therefore, it is particularly important to find alternative metals for lithium replacement. Sodium has the properties of rich in content, low cost and ability to provide high voltage, which makes it an ideal substitute for lithium. Sulfur-based materials have attributes of high energy density, high theoretical specific capacity and are easily oxidized. They may be used as cathodes matched with sodium anodes to form a sodium-sulfur battery. Traditional sodium-sulfur batteries are used at a temperature of about 300 °C. In order to solve problems associated with flammability, explosiveness and energy loss caused by high-temperature use conditions, most research is now focused on the development of room temperature sodium-sulfur batteries. Regardless of safety performance or energy storage performance, room temperature sodium-sulfur batteries have great potential as next-generation secondary batteries. This article summarizes the working principle and existing problems for room temperature sodium-sulfur battery, and summarizes the methods necessary to solve key scientific problems to improve the comprehensive energy storage performance of sodium-sulfur battery from four aspects: cathode, anode, electrolyte and separator.

摘要

锂离子电池已经得到了大规模的应用,但仍然存在安全性差和成本高的问题,而且锂资源有限限制了锂电池的生产。这些设备的构建也受到有限的锂供应的阻碍。因此,寻找替代锂的金属尤为重要。钠具有储量丰富、成本低、能提供高电压的特性,使其成为理想的锂替代物。基于硫的材料具有高能量密度、高理论比容量和易氧化的属性。它们可以用作与钠阳极相匹配的阴极,以形成钠硫电池。传统的钠硫电池在约 300°C 的温度下使用。为了解决高温使用条件下易燃、易爆和能量损失等问题,目前大多数研究都集中在室温钠硫电池的开发上。无论是安全性还是储能性能,室温钠硫电池作为下一代二次电池都具有巨大的潜力。本文总结了室温钠硫电池的工作原理和存在的问题,并从阴极、阳极、电解质和隔膜四个方面总结了为解决关键科学问题、提高钠硫电池综合储能性能所需的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cdfc/7999928/b79241f16082/molecules-26-01535-g001.jpg

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