Enhanced Performance of Zn/Br Flow Battery Using N-Methyl-N-Propylmorpholinium Bromide as Complexing Agent

流动电池 溴化物 电解质 化学 阳极 无机化学 电极 化学工程 有机化学 工程类 物理化学
作者
Uxua Jiménez-Blasco,E. Moreno,Maura Cólera,Pilar Díaz‐Carrasco,José Carlos Arrebola Haro,Álvaro Caballero,J. Morales,Oscar Vargas-Ceballos
出处
期刊:International Journal of Molecular Sciences [MDPI AG]
卷期号:22 (17): 9288-9288 被引量:11
标识
DOI:10.3390/ijms22179288
摘要

Redox flow batteries (RFB) are one of the most interesting technologies in the field of energy storage, since they allow the decoupling of power and capacity. Zinc-bromine flow batteries (ZBFB) are a type of hybrid RFB, as the capacity depends on the effective area of the negative electrode (anode), on which metallic zinc is deposited during the charging process. Gaseous bromine is generated at the positive electrode (cathode) during the charging process, so the use of bromine complexing agents (BCA) is very important. These BCAs are quaternary amines capable of complexation with bromine and generating an organic phase, immiscible with the aqueous electrolyte. One of the most commonly used BCAs in RFB technology is 4-methylethylmorpholinium bromide (MEM-Br). In this work, an alternative quaternary amine 4-methylpropylmorpholinium bromide (MPM-Br) was studied. MPM-Br was integrated into the electrolyte, and 200 charge-discharge cycles were performed on the resulting ZBFBs. The obtained results were compared with those when MEM-Br was used, and it was observed that the electrolyte with MPM-Br displays a higher resistance in voltage and higher energy efficiency, making it a promising alternative to MEM-Br.
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