Ma Wenyan, Zhang Pengchao, Tang Linting, Ge Mantang, Qi Yunpeng, Chen Yu, Zhang Chong, Jiang Jia-Xing
Institution Shaanxi Key Laboratory for Advanced Energy Devices, School of Materials Science and Engineering, Shaanxi Normal University, Xi'an, 710062, P. R. China.
Key Laboratory of Optoelectronic Chemical Materials and Devices (Ministry of Education), School of Optoelectronic Materials & Technology, Jianghan University, Wuhan, 430056, P. R. China.
ChemSusChem. 2024 May 21;17(10):e202301725. doi: 10.1002/cssc.202301725. Epub 2024 Jan 29.
Rechargeable aluminum battery (RAB) is expected to be a promising energy storage technique for grid-scale energy storage. However, the development of RABs is seriously plagued by the lack of suitable cathode materials. Herein, we report two p-type conjugated polymers of L-PBPz and C-PBPz with the same building blocks of diphenylphenazine but different linkage patterns of linear and crosslinked structures as the cathode materials for Al dual-ion batteries. Compared to the linear polymer skeleton in L-PBPz, the crosslinked structure endows C-PBPz with amorphous nature and low dihedral angles of the polymer chains, which severally contribute to the fast diffusion of AlCl with large size and the electron transfer during the redox reaction of diphenylphenazine. As a result, C-PBPz delivers a much better rate performance than L-PBPz. The crosslinked structure also leads to a stable cyclability with over 80000 cycles for C-PBPz. Benefiting from the fast kinetics, meanwhile, the C-PBPz cathode could realize a high redox activity of 117 mAh g, corresponding to an areal capacity of 2.30 mAh cm, even under a high mass loading of 19.7 mg cm and a low content of 10 wt% conductive agent. These results might boost the development of polymer cathodes for RABs.
可充电铝电池(RAB)有望成为一种用于电网规模储能的有前景的储能技术。然而,由于缺乏合适的阴极材料,RAB的发展受到严重困扰。在此,我们报道了两种具有相同二苯基吩嗪结构单元但线性和交联结构连接方式不同的p型共轭聚合物L-PBPz和C-PBPz,作为铝双离子电池的阴极材料。与L-PBPz中的线性聚合物骨架相比,交联结构赋予C-PBPz非晶态性质和较低的聚合物链二面角,这分别有助于大尺寸AlCl的快速扩散以及二苯基吩嗪氧化还原反应过程中的电子转移。结果,C-PBPz的倍率性能比L-PBPz好得多。交联结构还使C-PBPz具有稳定的循环性能,循环次数超过80000次。同时,受益于快速动力学,即使在19.7 mg cm的高质量负载和10 wt%的低导电剂含量下,C-PBPz阴极仍可实现117 mAh g的高氧化还原活性,对应于2.30 mAh cm的面积容量。这些结果可能会推动用于RAB的聚合物阴极的发展。