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通过K通量整流器调整自由度以实现安全长寿命钾离子电池

Trimming the Degrees of Freedom via a K Flux Rectifier for Safe and Long-Life Potassium-Ion Batteries.

作者信息

Yi Xianhui, Rao Apparao M, Zhou Jiang, Lu Bingan

机构信息

School of Physics and Electronics, Hunan University, Changsha, 410082, People's Republic of China.

Department of Physics and Astronomy, Clemson Nanomaterials Institute, Clemson University, Clemson, SC, 29634, USA.

出版信息

Nanomicro Lett. 2023 Aug 18;15(1):200. doi: 10.1007/s40820-023-01178-3.

Abstract

High degrees of freedom (DOF) for K movement in the electrolytes is desirable, because the resulting high ionic conductivity helps improve potassium-ion batteries, yet requiring support from highly free and flammable organic solvent molecules, seriously affecting battery safety. Here, we develop a K flux rectifier to trim K ion's DOF to 1 and improve electrochemical properties. Although the ionic conductivity is compromised in the K flux rectifier, the overall electrochemical performance of PIBs was improved. An oxidation stability improvement from 4.0 to 5.9 V was realized, and the formation of dendrites and the dissolution of organic cathodes were inhibited. Consequently, the K||K cells continuously cycled over 3,700 h; K||Cu cells operated stably over 800 cycles with the Coulombic efficiency exceeding 99%; and K||graphite cells exhibited high-capacity retention over 74.7% after 1,500 cycles. Moreover, the 3,4,9,10-perylenetetracarboxylic diimide organic cathodes operated for more than 2,100 cycles and reached year-scale-cycling time. We fabricated a 2.18 Ah pouch cell with no significant capacity fading observed after 100 cycles.

摘要

电解质中钾(K)离子具有高度的自由度(DOF)是理想的,因为由此产生的高离子电导率有助于改善钾离子电池,但这需要高度自由且易燃的有机溶剂分子的支持,严重影响电池安全性。在此,我们开发了一种钾通量整流器,将钾离子的自由度调整为1,并改善其电化学性能。尽管钾通量整流器中的离子电导率有所降低,但钾离子电池的整体电化学性能得到了改善。实现了氧化稳定性从4.0伏提高到5.9伏,抑制了枝晶的形成和有机阴极的溶解。因此,钾||钾电池连续循环超过3700小时;钾||铜电池在800次循环中稳定运行,库仑效率超过99%;钾||石墨电池在1500次循环后仍保持74.7%以上的高容量保持率。此外,3,4,9,10-苝四羧酸二酰亚胺有机阴极运行超过2100次循环,达到了年尺度的循环时间。我们制造了一个2.18 Ah的软包电池,在100次循环后未观察到明显的容量衰减。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5f9e/10439096/b8006786b07c/40820_2023_1178_Fig1_HTML.jpg

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