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首页> 外文期刊>Chemical engineering journal >Alkaline aqueous organic redox flow batteries of high energy and power densities using mixed naphthoquinone derivatives
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Alkaline aqueous organic redox flow batteries of high energy and power densities using mixed naphthoquinone derivatives

机译:碱性水性有机氧化还原流量使用混合萘醌衍生物的高能和功率密度

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摘要

Mixture of 1,2-naphthoquinone-4-sulfonic acid sodium salt (NQ-S) and 2-hydroxy-1,4-naphthoquinone (Lawsone) is used as negative active species for aqueous organic redox flow battery (AORFB), while ferrocyanide (FeCN) is considered as positive active species in alkaline electrolyte. NQ-S is initially transformed to NQ-OH that has the same chemical structure with Lawsone by the nucleophilic attack under potassium hydroxide (KOH) electrolyte. The mixture of NQ-S and Lawsone (NQ-SO) has a higher solubility in KOH electrolyte (1.26 M in 1 M KOH) than the individual NQ-SO and NQ-S (0.42 and 0.83 M in 1 M KOH, respectively) because of the hydrophilic sulfite (-SO32-) groups eliminated from NQ-S over the transformation and the polar-polar interaction amid -SO32- group, organic species and KOH electrolyte. Lawsone to NQ-S ratio for optimal NQ-SO is 2:1, and this ratio is determined by the hygroscopic properties of -SO32- group. The cell voltage of AORFB using 0.6 M NQ-SO and 0.4 M FeCN is 1.01 V and its charge efficiency, discharge capacity, state of charge (SOC) and power density under 100 mA.cm(-2) are 99%, 23 Ah.L-1, 70% and 90 mW.cm(-2). Furthermore, when the concentration of NQ-SO increases to 1.2 M (AORFB using 1.2 M NQ-SO and 0.4 M FeCN), its discharge capacity considerably increased to 40.3 Ah.L-1 with SOC of 83% and power density of 72 mW.cm(-2).
机译:1,2-萘醌-4-磺酸钠盐(NQ-S)和2-羟基-1,4-萘醌(标枪)的混合物用作含水有机氧化还原流量(AORFB)的阴性活性物质,而铁圆环烷(FECN)被认为是碱性电解质中的阳性活性物质。 NQ-S最初转化为NQ-OH,通过氢氧化钾(KOH)电解质下的亲核侵蚀具有与授权具有相同的化学结构。 NQ-S和授权(NQ-SO)的混合物在KOH电解质(1.26m在1M KOH中)的溶解度高于各个NQ-SO和NQ-S(0.42和0.83m,分别在1M KOH中)由于亲水性亚硫酸盐(-SO32-)在NQ-S上消除的转化和偏光极性相互作用中的氨基,有机物种和KOH电解质。对于最佳NQ-SO的NQ-S比例为2:1,该比率通过-SO32-基团的吸湿性确定。 AORFB的电池电压使用0.6米NQ-SO和0.4 M FECN为1.01 V及其电荷效率,放电容量,电荷状态(SOC)和100 mA.CM(-2)的功率密度为99%,23° .l-1,70%和90 mw.cm(-2)。此外,当NQ的浓度增加到1.2μm(使用1.2M NQ-SO和0.4M FECN的AORFB)时,其放电容量显着增加至40.3Ah.L-1,SOC为83%,功率密度为72兆瓦.cm(-2)。

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