Ultrathin atomic layer deposition Al2O3 coatings on graphite cathode materials for improving anti‐self‐discharging Al‐ion battery

原子层沉积 石墨 电池(电) 电解质 化学 法拉第效率 阴极 涂层 图层(电子) 化学工程 离子液体 沉积(地质) 电极 分析化学(期刊) 有机化学 催化作用 功率(物理) 物理 量子力学 物理化学 工程类 古生物学 沉积物 生物
作者
Swathi M. Gowdru,Yucheng Wu,Ting‐Ran Liu,Shivaraj B. Patil,Zhijie Li,Han‐Hsuan Hsieh,Zhen Chen,Cheng‐Yen Wen,Di‐Yan Wang
出处
期刊:Journal of The Chinese Chemical Society [Wiley]
卷期号:70 (12): 2238-2244
标识
DOI:10.1002/jccs.202300291
摘要

Abstract Objectives Self‐discharging is a natural behavior that occurs in all batteries. In this work, to reduce the self‐discharging behavior of Al‐ion battery, the graphite materials were coated with different thickness of Al 2 O 3 coatings (3, 5, 7, and 10 nm) by using atomic layer deposition (ALD) technique. Because there is no solid electrolyte interface (SEI) formed in Al‐ion battery with using ionic liquid electrolyte, ALD–Al 2 O 3 coating could play a role in artificial SEI in Al‐ion battery. Methods The aluminum oxide (Al 2 O 3 ) layer on the graphite electrode was deposited via ALD. During the deposition, the growth temperature for Al 2 O 3 was kept at 80°C. High‐purity N 2 was used to carry the gas precursors of trimethylaluminium Al 2 (CH 3 ) 6 (TMA) and H 2 O alternately into the reacting chamber of ALD. Each injection of gas precursor was followed by purging the reacting chamber with high‐purity N 2 . By controlling different reaction times, the different thickness of ALD–Al 2 O 3 coatings on the surface of graphite materials can be obtained. Results We found that SP1 graphite coated with 5 nm Al 2 O 3 (SG–ALD‐5 nm) as cathode materials in Al‐ion battery exhibited a superior anti‐self‐discharging behavior (260 h) with long stability (∼900 cycles). The battery capacity can achieve up to 85 mAh/g at a current density of 300 mA/g (3C) with a coulombic efficiency (CE) of 98.5%. Furthermore, the ALD–Al 2 O 3 coating method can also be applied to other graphite materials. The battery based on flexuous graphite with an ALD–Al 2 O 3 coating (FG–ALD) also exhibited excellent discharging capacity of 140 mAh/g with good cycle stability over 3000 cycles at a current density of 3000 mA/g. Conclusion Overall results indicated that ALD coatings on graphite materials demonstrated significantly promising on not only reducing the self‐discharging problem but also remaining the superior battery performance.
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