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首页> 外文期刊>RSC Advances >Enhancing the solubility of 1,4-diaminoanthraquinones in electrolytes for organic redox flow batteries through molecular modification
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Enhancing the solubility of 1,4-diaminoanthraquinones in electrolytes for organic redox flow batteries through molecular modification

机译:通过分子改性,增强1,4-二氨基蒽醌在电解质中的电解质溶解度

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摘要

1,4-Diaminoanthraquinones (DAAQs) are a promising class of redox-active molecules for use in nonaqueous redox flow batteries (RFBs) because they can have up to five electrochemically accessible and reversible oxidation states. However, most of the commercially available DAAQs have a low solubility in the polar organic solvents that are typically used in RFBs, in particular when supporting electrolyte salts are present. This significantly limits the energy densities that can be achieved. We have functionalized the amino groups in the DAAQ structure with three types of chains, namely alkyl chains, cationic alkyl chains and oligoethylene glycol ether chains, and measured the solubility of these derivatives in various organic solvents by quantitative UV-Vis absorption spectroscopy. The DAAQ derivatives with higher polarity exhibit a significantly higher solubility in commonly used organic electrolytes in comparison to apolar derivatives. Cyclic voltammetry was used to assess the viability of the DAAQs as redox-active species for RFBs. Although the cationic DAAQ derivatives have an enhanced solubility in the electrolytes, the cathodic redox reactions have a poor reversibility, most likely due to an internal decomposition reaction of their reduced forms. The oligoethylene-glycol-ether-functionalized DAAQs are the most promising compounds for use in organic RFB electrolytes because they have the optimal combination of high solubility and a high reversibility of the redox couples.
机译:1,4-氨基尼金酮(DAAQs)是一种有前途的氧化还原活性分子,用于非水氧化还原流量电池(RFB),因为它们可以具有多达五种电化学可接近和可逆的氧化状态。然而,大多数市售的DAAQs在极性有机溶剂中具有低溶解度,所述极性有机溶剂通常在RFBS中使用,特别是当存在电解质盐时。这显着限制了可以实现的能量密度。我们已经用三种类型的链,即烷基链,阳离子烷基链和寡糖乙二醇醚链官能化了DAAQ结构中的氨基,并通过定量UV-Vis吸收光谱测量了这些衍生物在各种有机溶剂中的溶解度。与具有稳定衍生物相比,具有较高极性具有更高极性的DAAQ衍生物在常用的有机电解质中表现出显着更高的溶解度。用于评估DAAQs作为RFBS的氧化还原活性物质的活力。尽管阳离子DAAQ衍生物在电解质中具有增强的溶解度,但阴极氧化还原反应具有差的可逆性,最有可能由于其还原形式的内部分解反应而产生。寡糖 - 二醇醚官能化的DAAQ是用于有机RFB电解质的最有希望的化合物,因为它们具有高溶解度的最佳组合和氧化还原型夫妻的高可逆性。

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