Department of Energy and Materials , Konkuk University , Chungju 27478 , South Korea.
Qingdao Institute of Bioenergy and Bioprocess Technology , Chinese Academy of Sciences , Xinyuan Road , Laoshan Qu, Qingdao Shi , Shandong Sheng 266000 , China.
ACS Appl Mater Interfaces. 2019 Sep 25;11(38):34930-34938. doi: 10.1021/acsami.9b10474. Epub 2019 Sep 10.
Single-ion conducting polymer electrolyte (SICPE) is a safer alternative to the conventional high-performance liquid electrolyte for Li-ion batteries. The performance of SICPEs-based Li-ion batteries is limited due to the low Li conductivities of SICPEs at room temperature. Herein, we demonstrated the synthesis of a novel SICPE, poly(ethylene--acrylic lithium (fluoro sulfonyl)imide) (PEALiFSI), with acrylic (fluoro sulfonyl)imide anion (AFSI). The solvent- and plasticizer-free PEALiFSI electrolyte, which was assembled at 90 °C under pressure, exhibited self-healing properties with remarkably high Li conductivity (5.84 × 10 S cm at 25 °C). This is mainly due to the self-healing behavior of this electrolyte, which induced to increase the proportion of the amorphous phase. Additionally, the weak interaction of Li with the resonance-stabilized AFSI anion is also responsible for high Li conductivity. This self-healed SICPE showed high Li transference number (ca. 0.91), flame and heat retardancy, and good thermal stability, which concurrently delivered ca. 88.25% (150 mAh g at 0.1C) of the theoretical capacitance of LiFePO cathode material at 25 °C with the full-cell configuration of LiFePO/PEALiFSI/graphite. Furthermore, the self-healed PEALiFSI-based all-solid-state Li battery showed high electrochemical cycling stability with the capacity retention of 95% after 500 charge-discharge cycles.
单离子导电聚合物电解质 (SICPE) 是锂离子电池中传统高性能液体电解质的更安全替代品。由于 SICPE 在室温下的锂离子电导率较低,因此基于 SICPE 的锂离子电池的性能受到限制。在此,我们展示了一种新型 SICPE 的合成,即聚(乙烯-丙烯酸锂(氟磺酰)亚胺)(PEALiFSI),其中含有丙烯酸(氟磺酰)亚胺阴离子(AFSI)。在 90°C 下加压组装的无溶剂和无增塑剂的 PEALiFSI 电解质具有自修复性能,室温下的锂离子电导率高达 5.84×10 S cm。这主要是由于该电解质的自修复行为导致非晶相比例增加。此外,Li 与共振稳定的 AFSI 阴离子的弱相互作用也导致了高锂离子电导率。这种自修复的 SICPE 具有高锂离子迁移数(约 0.91)、阻燃和耐热性以及良好的热稳定性,在 25°C 下使用 LiFePO 全电池配置(LiFePO/PEALiFSI/石墨)时,其理论容量约为 88.25%(150 mAh g 在 0.1C 时)。此外,自修复的基于 PEALiFSI 的全固态 Li 电池表现出高电化学循环稳定性,在 500 次充放电循环后容量保持率为 95%。