Energy and Environmental Directorate, Pacific Northwest National Laboratory , 902 Battelle Boulevard, Richland, Washington 99354, United States.
Environmental and Molecular Sciences Laboratory, Pacific Northwest National Laboratory , 3335 Innovation Boulevard, Richland, Washington 99354, United States.
ACS Appl Mater Interfaces. 2017 Jun 7;9(22):18826-18835. doi: 10.1021/acsami.7b04099. Epub 2017 May 30.
Formulating electrolytes with solvents of low freezing points and high dielectric constants is a direct approach to extend the service-temperature range of lithium (Li)-ion batteries (LIBs). In this study, we report such wide-temperature electrolyte formulations by optimizing the ethylene carbonate (EC) content in the ternary solvent system of EC, propylene carbonate (PC), and ethyl methyl carbonate (EMC) with LiPF salt and CsPF additive. An extended service-temperature range from -40 to 60 °C was obtained in LIBs with lithium nickel cobalt aluminum oxide (LiNiCoAlO, NCA) as cathode and graphite as anode. The discharge capacities at low temperatures and the cycle life at room temperature and elevated temperatures were systematically investigated together with the ionic conductivity and phase-transition behaviors. The most promising electrolyte formulation was identified as 1.0 M LiPF in EC-PC-EMC (1:1:8 by wt) with 0.05 M CsPF, which was demonstrated in both coin cells of graphite∥NCA and 1 Ah pouch cells of graphite∥LiNiMnCoO. This optimized electrolyte enables excellent wide-temperature performances, as evidenced by the high capacity retention (68%) at -40 °C and C/5 rate, significantly higher than that (20%) of the conventional LIB electrolyte, and the nearly identical stable cycle life as the conventional LIB electrolyte at room temperature and elevated temperatures up to 60 °C.
通过选择低冰点和高介电常数的溶剂来配制电解液是拓宽锂离子电池(LIB)工作温度范围的直接方法。在本研究中,我们通过优化三元溶剂体系(碳酸乙烯酯(EC)、碳酸丙烯酯(PC)和碳酸甲乙酯(EMC))中 EC 的含量,并加入 LiPF 盐和 CsPF 添加剂,报告了这种宽温电解液的配方。以 LiNiCoAlO(NCA)为正极、石墨为负极的 LIB 可以在-40 至 60°C 的温度范围内工作。我们系统地研究了低温下的放电容量、室温及高温下的循环寿命,以及离子电导率和相转变行为。最有前途的电解液配方被确定为 1.0 M LiPF 在 EC-PC-EMC(1:1:8 按重量比)中的电解液,其中含有 0.05 M CsPF。该电解液在石墨∥NCA 扣式电池和石墨∥LiNiMnCoO 的 1 Ah 软包电池中都得到了验证。这种优化后的电解液具有出色的宽温性能,在-40°C 和 C/5 倍率下的容量保持率(68%)显著高于传统 LIB 电解液(20%),并且在室温及高温至 60°C 时的稳定循环寿命与传统 LIB 电解液几乎相同。