Department of Chemistry, Sangmyung University, Seoul 110-743 (Republic of Korea).
ChemSusChem. 2015 Jan;8(2):310-4. doi: 10.1002/cssc.201403021. Epub 2014 Nov 26.
Ferrocene and cobaltocene and their derivatives are studied as new redox materials for redox flow cells. Their high reaction rates and moderate solubility are attractive properties for their use as active materials. The cyclability experiments are carried out in a static cell; the results showed that these materials exhibit stable capacity retention and predictable discharge potentials, which agree with the potential values from the cyclic voltammograms. The diffusion coefficients of these materials are 2 to 7 times higher than those of other non-aqueous materials such as vanadium acetylacetonate, iron tris(2,2'-bipyridine) complexes, and an organic benzene derivative.
二茂铁和环辛二烯及其衍生物被研究作为氧化还原流电池的新型氧化还原材料。它们的高反应速率和适中的溶解度是其作为活性材料使用的吸引人的特性。循环实验在静态电池中进行;结果表明,这些材料表现出稳定的容量保持和可预测的放电电位,这与循环伏安图中的电位值一致。这些材料的扩散系数比其他非水材料(如乙酰丙酮钒、铁三(2,2'-联吡啶)配合物和有机苯衍生物)高 2 到 7 倍。