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张望清课题组 | CHEMICAL ENGINEERING JOURNAL

发布人:    发布时间:2024/02/20   浏览次数:

Lithium-copolymerized polyimide cathodes for stable and fast lithium-ion storage


By

Li, AX (Li, Axiang) [1] ; Xu, YY (Xu, Yuanyuan) [1] ; Shi, JX (Shi, Jinxing) [1] ; Yuan, B (Yuan, Bing) [1] ; Cheng, FY (Cheng, Fangyi) [1] , [2] ; Zhang, WQ (Zhang, Wangqing) [1] , [3]
(provided by Clarivate)

Source

CHEMICAL ENGINEERING JOURNAL

Volume

481

DOI

10.1016/j.cej.2023.148503

Article Number

148503

Early Access

JAN 2024

Indexed

2024-02-05

Document Type

Article; Early Access

Abstract

Organic materials as cathodes have attracted a lot of attention for lithium -ion batteries due to their structural designability and high theoretical capacity. However, most organic polymer cathode materials, such as it -conjugated polymers, have slow diffusion of lithium ions due to closely packed structures, resulting in inferior properties. Herein, we have synthesized lithium modified polyimides by condensation polymerization between 3,4,9,10-perylenetetracarboxylic acid dianhydride and 1,2-ethylenediamine in the presence of N-(2-aminoethyl) glycine lithium salt. The lithium -copolymerized polyimides exhibit lamellar structure and have increased specific surface area and therefore lead to enhanced lithium -ion diffusion coefficient and electronic conductivity. Lithium metal half cells employing lithium modified polyimide cathodes have a high discharge capacity of 138.3 mAh g-1 at a current density of 30 mA g-1 and good cycling stability with 71 % capacity retention at a current density of 1000 mA g-1 after 5000 cycles, which are much better than those employing general polyimides.