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Novel Organic Redox Flow Batteries Using Soluble Quinonoid Compounds As Positive Materials

机译:使用可溶性醌类化合物作为正材料的新型有机氧化还原流量

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Novel organic redox flow battery is proposed based on 4, 5- dihydroxy-1, 3-benzenedisulfonate and 2, 5 dihydroxy-benzenedisulfonate as positive materials and PbSO{sub}4/Pb as negative electrode in aqueous H{sub}2SO{sub}4 solution with an ion-exchange membranes between the positive and negative electrolyte. 4, 5-dihydroxy-1, 3-benzenedisulfonate oxide and 2, 5-dihydroxybenzenedisulfonate oxide have good reversibility and relatively high potentials in acidic solutions although the two hydroquinones have different electrochemical mechanism. Hydroquinones are oxidized to quinones at positive electrode during charge and quinones are reduced to hydroquinones during discharge. Results obtained with a small laboratory cell show that high efficiencies can be achieved with an average coulombic efficiency of 99% and energy efficiency of 70% over 100 cycles. High performance obtained indicates that soluble quinones are promising positive materials of novel organic redox flow batteries.
机译:提出了基于4,5-二羟基-1,3-苯二磺酸盐和2,5二羟基 - 苯二磺酸盐作为正材料和PBSO {Sub} 2所载的负电极作为正材料和PBSO {Sub的负电极。 4溶液在正极和负电解质之间具有离子交换膜。 4,5-二羟基-1,3-苯甲磺酸盐氧化物和2,5-二羟基苯化磺酸盐氧化物具有良好的可逆性,并且在酸性溶液中具有相对高的电位,尽管两种氢醌具有不同的电化学机理。将氢醌在电荷期间氧化成醌,并且在放电期间将醌减少到氢醌。通过小实验室细胞获得的结果表明,可以实现高效率,平均库仑效率为99%,能量效率为70%超过100次循环。获得的高性能表明可溶性醌是有前途的新型有机氧化还原流电池的正面材料。

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