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Strategies to Optimize Performance of Lithium-Ion Supercapacitors: Screening of Cathode Configuration, Anode Pre-Lithiation Loading and Separator Type

机译:优化锂离子超级电容器性能的策略:阴极配置的筛选,阳极预锂化载荷和分离型

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The Li-ion capacitor (LIC) is composed of a lithium-doped carbon anode and an activated carbon cathode, which is a half Li-ion battery (LIB) and a half electrochemical double-layer capacitor (EDLC). LICs can achieve much more energy density than EDLC without sacrificing the high power performance advantage of capacitors over batteries. LIC pouch cells were assembled using activated carbon (AC) cathode and hard carbon (HC) + stabilized lithium metal power (SLMP~?) anode. Different cathode configurations, various SLMP loadings on HC anode, and two types of separators were investigated to achieve the optimal electrochemical performance of the LIC. Firstly, the cathode binders study suggests that the PTFE binder offers improved energy and power performances for LIC in comparison to PVDF. Secondly, the mass ratio of SLMP to HC is at 1:7 to obtain the optimized electrochemical performance for LIC among all the various studied mass ratios between lithium loading amounts and active anode material. Finally, compared to the separator Celgard PP 3501, cellulose based TF40-30 is proven to be a preferred separator for LIC.
机译:锂离子电容器(LIC)由锂掺杂的碳阳极和活性炭阴极组成,其是半离子电池(Lib)和半电化学双层电容器(EDLC)。 LICs可以比EDLC实现更多的能量密度,而不会牺牲电容器上电容器的高功率性能优势。使用活性炭(AC)阴极和硬碳(HC)+稳定的锂金属功率(SLMP〜2)阳极组装LIC袋细胞。不同的阴极配置,HC阳极上的各种SLMP负载,以及两种类型的分离器进行了研究,以实现LIC的最佳电化学性能。首先,阴极粘合剂研究表明,与PVDF相比,PTFE粘合剂为LIC提供了改进的能量和功率性能。其次,SLMP至HC的质量比为1:7,以在锂负载量和活性阳极材料之间的所有各种研究的质量比中获得优化的电化学性能。最后,与分离器Celgard PP 3501相比,基于纤维素的TF40-30被证明是LIC的优选分离器。

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