Zhang Peng, Gan Xiaotang, Huang Liang, Wang Junxiao, Li Minle, Hu Zijun, Wang Rui, Yu Tingting, Song Zhiping
Hubei Key Lab of Electrochemical Power Sources, College of Chemistry and Molecular Sciences, Wuhan University, Wuhan 430072, China.
ACS Appl Mater Interfaces. 2024 Mar 27;16(12):14929-14939. doi: 10.1021/acsami.4c00586. Epub 2024 Mar 14.
Organic cathode materials (OCMs) have tremendous potential to construct sustainable and highly efficient batteries beyond conventional Li-ion batteries. Thereinto, quinone/pyrazine hybrids show significant advantages in material availability, energy density, and cycling stability. Herein, we propose a facile method to synthesize quinone/pyrazine hybrids, i.e., the condensation reaction between ortho-diamine and bromoacetyl groups. Based on it, we have successfully synthesized three 1,4-diazaanthraquinone (DAAQ) dimers, including 2,2'-bi(1,4-diazaanthraquinone) (BDAAQ) with an exceptional theoretical capacity of 512 mAh g based on the eight-electron reaction. It can be fully utilized in Li batteries in a wide voltage range of 0.8-3.8 V, at the cost of inferior cycling stability. In an optimal voltage range of 1.4-3.8 V, BDAAQ exhibits one of the best comprehensive electrochemical performances for small-molecule OCMs, including a high specific capacity of 366 mAh g, an average discharge voltage of 2.26 V, as well as a respectable capacity retention of 59% after 500 cycles. Moreover, the in-depth investigations reveal the redox reaction mechanisms based on C═O and C═N groups as well as the capacity fading mechanisms based on dissolution-redeposition behaviors. In brief, this work provides an instructive synthesis method and mechanism understanding of high-performance OCMs based on a quinone/pyrazine hybrid structure.
有机阴极材料(OCMs)在构建超越传统锂离子电池的可持续且高效的电池方面具有巨大潜力。其中,醌/吡嗪杂化物在材料可得性、能量密度和循环稳定性方面展现出显著优势。在此,我们提出一种简便的方法来合成醌/吡嗪杂化物,即邻二胺与溴乙酰基之间的缩合反应。基于此,我们成功合成了三种1,4 - 二氮杂蒽醌(DAAQ)二聚体,包括2,2'-联(1,4 - 二氮杂蒽醌)(BDAAQ),基于八电子反应其理论容量高达512 mAh g 。它可在0.8 - 3.8 V的宽电压范围内充分应用于锂电池,但循环稳定性较差。在1.4 - 3.8 V的最佳电压范围内,BDAAQ展现出小分子OCMs中最佳的综合电化学性能之一,包括366 mAh g的高比容量、2.26 V的平均放电电压以及500次循环后可观的59%的容量保持率。此外,深入研究揭示了基于C═O和C═N基团的氧化还原反应机理以及基于溶解 - 再沉积行为的容量衰减机理。简而言之,这项工作为基于醌/吡嗪杂化结构的高性能OCMs提供了一种指导性的合成方法和机理理解。