论文标题

用于高周期稳定性和低温适应性锂离子电池的混合水/离子液体电解质

Hybrid aqueous/ionic liquid electrolyte for high cycle stability and low temperature adaptability lithium-ion battery

论文作者

Yang, Yuewang, Liu, Sijing, Bai, Zhaowen, Huang, Baoling

论文摘要

可充电电池是有前途的储能设备,可提供高安全性,环境友好性和易于组装。但是,它们的循环稳定性和低温性能受到狭窄的电化学稳定性窗口和水解电解质的高冰点的限制。在这里,通过将Emimdep用作新颖的添加剂而开发出具有宽电化学窗口(2.15V)和低冰点(-60 OC)的混合电解质。疏水EMIM+积聚在带负电的电极上并排除水分子,从而抑制了水分分裂。同时,亲水性dep与水形成牢固的氢键,从而降低了电解质的冰点。此外,与其他有机添加剂相比,EMIMDEP20-H2O80电解质中的混合1 M Lino3在EMIMDEP的非易受度,非挥发性和低毒性时表现出很高的安全性和高稳定性。由于水性/emimdep电解质的优势,带有Liti $ _2 $(PO $ _4 $)的完整电池(PO $ _4 $)$ _ 3 $ andode and Limn $ _2 $ _2 $ o $ _4 $ _4 $ _4 $ _4 PORTODE可提供1.6 V的平均电压为1.6 v,特定的能力为120 mah/g,其能力为120 mah/g,其容量为80%以后的500 cycles cycles cycles cycles cycles cycles cycles cyc cyc cyc cyce cy cy均为1c。此外,在-35 OC下工作的完整电池可在室温下提供60%的特异性容量。

Aqueous rechargeable batteries are promising energy storage devices for the high safety, environmental friendliness, and easy assembly. However, their cycle stability and low temperature performance are limited by the narrow electrochemical stability window and the high freezing point of the aqueous electrolytes. Here, a hybrid electrolyte with a wide electrochemical window (2.15V) and a low freezing point (-60 oC) is developed by using EMIMDep as a novel additive. The hydrophobic EMIM+ accumulates on the negatively charged electrode and repels the water molecules, thus suppressing the water splitting. Meanwhile, the hydrophilic Dep- forms strong hydrogen bonds with water, thereby reducing the freezing point of the electrolyte. In addition, the hybrid 1 M LiNO3 in EMIMDep20-H2O80 electrolytes exhibit high safety and high stability due to the non-flammability, non-volatility, and low toxicity of the EMIMDep compared with other organic additives. Owing to the advantages of the aqueous/EMIMDep electrolyte, the full battery with LiTi$_2$(PO$_4$)$_3$ anode and LiMn$_2$O$_4$ cathode delivers an average voltage of 1.6 V and a specific capacity of 120 mAh/g with a capacity retention of 80% after 500 cycles at 1C. In addition, the full battery working at -35 oC delivers 60% specific capacity of that at room temperature.

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