Nugraha Ivone Marselina, Olchowka Jacob, Brochon Cyril, Flahaut Delphine, Bousquet Mélanie, Cabannes-Boue Benjamin, Bianchini Nuernberg Rafael, Cloutet Éric, Croguennec Laurence
Univ. Bordeaux, CNRS, Bordeaux INP, ICMCB, UMR 5026, Pessac, F-33600, France.
Univ. Bordeaux, CNRS, Bordeaux INP, LCPO, UMR 5629, Pessac, F-33600, France.
Adv Sci (Weinh). 2024 Dec;11(46):e2409403. doi: 10.1002/advs.202409403. Epub 2024 Oct 21.
Li-ion battery performance relies fundamentally on modulation at the microstructure and interface levels of the composite electrodes. Correspondingly, the binder is a crucial component for mechanical integrity of the electrode, serving to interconnect the active material and conductive additive and to firmly attach this composite to the current collector. However, the commonly used poly(vinylidenefluoride) (PVDF) binder presents several limitations, including the use of toxic solvent during processing, a low electrical conductivity which for compensation requires the addition of carbon black, and weak interactions with active materials and collectors. This study investigates Poly(3,4-ethylenedioxythiophene):poly[(4-styrenesulfonyl) (trifluoromethylsulfonyl) imide] (PEDOT:PSSTFSI) as an alternative binder and conductive additive, in replacement of both PVDF and carbon black, in Li-ion batteries with LiFeMnPO at the positive electrode. Complex PEDOT:PSSTFSI significantly improves the electronic conductivity and lithium diffusion coefficient within the electrode, in comparison to standard PVDF binder and carbon black. This enhances significantly the electrochemical performance at high C-rates and for high active mass loading electrodes. Furthermore, an excellent long-range cyclability is achieved.
锂离子电池的性能从根本上依赖于复合电极在微观结构和界面水平上的调控。相应地,粘结剂是电极机械完整性的关键组成部分,用于连接活性材料和导电添加剂,并将这种复合材料牢固地附着在集流体上。然而,常用的聚偏氟乙烯(PVDF)粘结剂存在一些局限性,包括在加工过程中使用有毒溶剂、电导率低(为此需要添加炭黑来补偿)以及与活性材料和集流体的相互作用较弱。本研究考察了聚(3,4 - 乙撑二氧噻吩):聚[(4 - 苯乙烯磺酰基)(三氟甲基磺酰基)亚胺](PEDOT:PSSTFSI)作为一种替代粘结剂和导电添加剂,在正极采用LiFeMnPO的锂离子电池中替代PVDF和炭黑。与标准PVDF粘结剂和炭黑相比,复合PEDOT:PSSTFSI显著提高了电极内的电子电导率和锂扩散系数。这显著增强了高C倍率下以及高活性物质负载电极的电化学性能。此外,还实现了出色的长循环稳定性。