Chen Xianhe, Zhang Weisheng, Zhang Chenxing, Guo Yuxuan, Yu Ao, Mei Shilin, Yao Chang-Jiang
State Key Laboratory of Explosion Science and Safety Protection, School of Mechatronical Engineering, Beijing Institute of Technology, Beijing, 100081, China.
Adv Sci (Weinh). 2024 Jun;11(23):e2310239. doi: 10.1002/advs.202310239. Epub 2024 Apr 6.
Rationally designed organic redox-active materials have attracted numerous interests due to their excellent electrochemical performance and reasonable sustainability. However, they often suffer from poor cycling stability, intrinsic low operating potential, and poor rate performance. Herein, a novel Donor-Acceptor (D-A) bipolar polymer with n-type pyrene-4,5,9,10-tetraone unit storing Li cations and p-type carbazole unit which attracts anions and provides polymerization sites is employed as a cathode for lithium-ion batteries through in situ electropolymerization. The multiple redox reactions and boosted kinetics by the D-A structure lead to excellent electrochemical performance of a high discharge capacity of 202 mA h g at 200 mA g, impressive working potential (2.87 and 4.15 V), an outstanding rate capability of 119 mA h g at 10 A g and a noteworthy energy density up to 554 Wh kg. This strategy has significant implications for the molecule design of bipolar organic cathode for high cycling stability and high energy density.
合理设计的有机氧化还原活性材料因其优异的电化学性能和合理的可持续性而备受关注。然而,它们常常存在循环稳定性差、固有工作电位低和倍率性能不佳等问题。在此,一种新型的供体-受体(D-A)双极聚合物被用作锂离子电池的正极,该聚合物具有储存锂离子的n型芘-4,5,9,10-四酮单元和吸引阴离子并提供聚合位点的p型咔唑单元,通过原位电聚合制备而成。D-A结构引发的多重氧化还原反应和增强的动力学导致其具有优异的电化学性能,在电流密度为200 mA g时具有202 mA h g的高放电容量,令人印象深刻的工作电位(2.87和4.15 V),在电流密度为10 A g时具有119 mA h g的出色倍率性能以及高达554 Wh kg的显著能量密度。该策略对于具有高循环稳定性和高能量密度的双极有机正极的分子设计具有重要意义。