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Surfactant for Enhanced Rheological, Electrical, and Electrochemical Performance of Suspensions for Semisolid Redox Flow Batteries and Supercapacitors

机译:表面活性剂,用于增强半固体氧化还原流量电池和超级电容器的悬浮液的流变,电气和电化学性能

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A suspension of Li4Ti5O12 and of Ketjen black in a solution of 1M lithium bis(trifluoromethanesulfonyl)imide in propylene carbonate is studied as the anolyte for semisolid redox flow batteries. The rheological behavior and electronic conductivity are studied both at rest and under shear flow. The electrochemical behavior is evaluated at rest as a function of the charge/discharge rates and of the thickness of the suspension in the electrochemical cell. The highly beneficial influence of the addition of a non-ionic surfactant in the composition of the suspension is demonstrated. All practical properties are improved with respect to semisolid redox flow applications. The viscosity decreases, the electronic conductivity increases and is less affected by the shear flow, and the electrochemical performance is improved. Moreover, the suspension shows much better stability, so its performance is preserved over time.
机译:在1M锂双(三氟甲磺酰基)酰亚胺中的丙二醇酯溶液中的Li4Ti5O12和Ketjen Black的悬浮液作为半固体氧化还原流量电池的阳极电极。 在休息和剪切流下研究流变行为和电子电导率。 电化学行为在静止时作为充电/放电速率的函数和电化学电池中的悬浮液的厚度进行评估。 证明了在悬浮液组合物中加入非离子表面活性剂的高有益影响。 对于半固体氧化还原流程应用,所有实际特性得到改善。 粘度降低,电子电导率增加并且受剪切流量的影响较小,并且改善了电化学性能。 此外,悬浮液显示出更好的稳定性,因此其性能随着时间的推移被保留。

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