Manirakiza Melchiade, Herrera Garza José Ramón, Karimi Azari Ramin, Bhaskaran Kesawarthini, Staffolani Antunes, Soavi Francesca, Santato Clara
Department of Engineering Physics, Polytechnique Montreal, Montreal, QC H3C 3A7, Canada.
Department of Chemistry "Giacomo Ciamician", Alma Mater Studiorum Universitá di Bologna, Via Gobetti 85, 40129 Bologna, Italy.
iScience. 2025 May 13;28(6):112657. doi: 10.1016/j.isci.2025.112657. eCollection 2025 Jun 20.
Li-ion battery (LIB) electrode materials feature mixed electronic-ionic transport. Their electronic conductivity is expected to depend on the degree of de-lithiation/lithiation, but it is challenging to evaluate such dependence as disentangled from ionic conductivity. Herein, we use the Ion-Gated Transistor (IGT) configuration to study the dependence of the electronic conductivity of lithium cobalt oxide (LiCoO or LCO)-based composite cathode material. LCO-based composite is employed as transistor channel interfaced with the ionic liquids: 1-Ethyl-3-methylimidazolium bis(trifluoromethylsulfonyl)imide ([EMIM][TFSI]) and 1-Butyl-1-methylpyrrolidinium bis(trifluoromethylsulfonyl)imide ([PYR][TFSI]), both without and with lithium bis(trifluoromethane)sulfonimide salt (LiTFSI). The gate-source bias controls the degree of lithiation/de-lithiation in the LCO composite-based IGT. We observed an increase in the drain-source transistor current upon the application of a gate-source bias, i.e., upon Li de-intercalation from the LCO composite cathode material. Our results pave the way for the evaluation of the state-of-charge (SOC) of LIB electrode materials, crucial for their efficient and sustainable use.
锂离子电池(LIB)电极材料具有混合的电子 - 离子传输特性。它们的电子电导率预计取决于脱锂/锂化程度,但要将这种依赖性与离子电导率区分开来进行评估具有挑战性。在此,我们使用离子门控晶体管(IGT)配置来研究基于钴酸锂(LiCoO₂ 或 LCO)的复合正极材料的电子电导率依赖性。基于 LCO 的复合材料用作与离子液体接触的晶体管通道:1 - 乙基 - 3 - 甲基咪唑鎓双(三氟甲基磺酰)亚胺([EMIM][TFSI])和 1 - 丁基 - 1 - 甲基吡咯烷鎓双(三氟甲基磺酰)亚胺([PYR][TFSI]),有无双(三氟甲烷)磺酰亚胺锂盐(LiTFSI)。栅源偏压控制基于 LCO 复合材料的 IGT 中的锂化/脱锂程度。我们观察到在施加栅源偏压时,即锂从 LCO 复合正极材料中脱嵌时,漏源晶体管电流增加。我们的结果为评估 LIB 电极材料的充电状态(SOC)铺平了道路,这对于它们的高效和可持续使用至关重要。