Matsidik Rukiya, Fazzi Daniele, Seifert Andreas, Sommer Michael
Institut für Chemie, Technische Universität Chemnitz, Straße der Nationen 62, 09111, Chemnitz, Germany.
Forschungszentrum MAIN, Technische Universität Chemnitz, Rosenbergstraße 6, 09126, Chemnitz, Germany.
Macromol Rapid Commun. 2025 Apr;46(6):e2401121. doi: 10.1002/marc.202401121. Epub 2025 Jan 13.
Aromatic diimides such as naphthalene diimide (NDI) and pyromellitic diimide (MDI) are important building blocks for organic electrode materials. They feature a two-electron redox mechanism that allows for energy storage. Due to the smaller size of MDI compared to NDI its theoretical capacity is higher. Studies on MDI-based small molecule and linear polymer electrodes indicate that MDI is unstable, yet the origin of instability remains unclear. Herein, two cross-linked networks of NDI and MDI are designed. The polymers, termed PNDI-EG and PMDI-EG, are synthesized via cationic polymerization of vinyl ethylene glycol-functionalized NDI and MDI monomers. The cross-linked structures preclude extrinsic degradation pathways (e.g., dissolution in the electrolyte), and thereby facilitate the investigation of intrinsic degradation mechanisms. PMDI-EG-based cathodes are less stable, and the performance of PMDI-EG/Li half cells is markedly inferior compared to PNDI-EG/Li cells. Our comprehensive experimental and quantum-chemical investigation reveals that PMDI-EG undergoes irreversible diimide ring opening upon prolonged charge-discharge cycles, while PNDI-EG remains intact. It is hypothesized that the smaller ring size of the five-membered imide renders MDI more susceptible to side reactions with nucleophiles in the electrolyte, causing rapid loss of capacity during the first cycles.
诸如萘二亚胺(NDI)和均苯四甲酸二亚胺(MDI)之类的芳香族二亚胺是有机电极材料的重要组成部分。它们具有双电子氧化还原机制,可用于能量存储。由于MDI的尺寸比NDI小,其理论容量更高。对基于MDI的小分子和线性聚合物电极的研究表明,MDI不稳定,但其不稳定的根源仍不清楚。在此,设计了NDI和MDI的两种交联网络。这些聚合物被称为PNDI-EG和PMDI-EG,它们是通过乙烯基乙二醇官能化的NDI和MDI单体的阳离子聚合反应合成的。交联结构排除了外在的降解途径(例如,溶解在电解质中),从而有助于研究内在的降解机制。基于PMDI-EG的阴极稳定性较差,与PNDI-EG/Li电池相比,PMDI-EG/Li半电池的性能明显较差。我们全面的实验和量子化学研究表明,PMDI-EG在长时间的充放电循环后会发生不可逆的二亚胺环开环,而PNDI-EG则保持完整。据推测,五元酰亚胺较小的环尺寸使MDI更容易与电解质中的亲核试剂发生副反应,从而在最初的循环中导致容量迅速损失。