O'Meara Cody, Karushev Mikhail P, Polozhentceva Iuliia A, Dharmasena Sajith, Cho Hanna, Yurkovich Benjamin J, Kogan Sam, Kim Jung-Hyun
Center for Automotive Research, Department of Mechanical and Aerospace Engineering , The Ohio State University , Columbus , Ohio 43210 , United States.
Powermers Inc. , Westerville , Ohio 43082 , United States.
ACS Appl Mater Interfaces. 2019 Jan 9;11(1):525-533. doi: 10.1021/acsami.8b13742. Epub 2018 Dec 26.
Systematic physical and electrochemical characterizations revealed unique positive multifunction of a polymeric salen-type nickel(II) complex, poly[Ni(CH-salen)], as an additive for conventional cathodes in lithium-ion batteries. Due to its promising electrochemical and mechanical properties, combined with its unique three-dimensional weblike electron-network structure, the redox-active-organometallic polymer can eliminate conductive carbon and replace a significant portion of the poly(vinylidene fluoride) (PVdF) binder that has been used in conventional LiFePO cathodes. By replacing such electrochemically inactive components (i.e., carbon and PVdF), LiFePO cathodes with poly[Ni(CH-salen)] deliver improved energy density compared with the conventional LiFePO cathode. Facile electron transfer via large-area contact at polymer/LiFePO interfaces significantly accelerates charge-transfer reactions and consequently improves the rate capability of the cathodes. In addition, unlike PVdF, poly[Ni(CH-salen)] retains steady Young's modulus values after immersing in an electrolyte solvent, which enhances the mechanical integrity of the cathodes during the cycling of battery cells and thereby improves their cycle life. The unique multifunction of the poly[Ni(CH-salen)] will be of broad interest for its application in next-generation energy-storage devices.
系统的物理和电化学表征揭示了一种聚合物席夫碱型镍(II)配合物聚[Ni(CH-salen)]作为锂离子电池传统阴极添加剂所具有的独特的正向多功能性。由于其具有良好的电化学和机械性能,再加上其独特的三维网状电子网络结构,这种氧化还原活性有机金属聚合物可以去除导电碳,并替代传统LiFePO阴极中使用的大部分聚偏氟乙烯(PVdF)粘结剂。通过取代这些电化学惰性成分(即碳和PVdF),含有聚[Ni(CH-salen)]的LiFePO阴极与传统LiFePO阴极相比,能量密度得到了提高。聚合物/LiFePO界面处通过大面积接触实现的便捷电子转移显著加速了电荷转移反应,从而提高了阴极的倍率性能。此外,与PVdF不同,聚[Ni(CH-salen)]在浸入电解质溶剂后仍保持稳定的杨氏模量值,这增强了电池单元循环过程中阴极的机械完整性,从而提高了它们的循环寿命。聚[Ni(CH-salen)]的独特多功能性对于其在下一代储能设备中的应用将具有广泛的意义。