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Organic Redox Species in Aqueous Flow Batteries: Redox Potentials, Chemical Stability and Solubility

机译:水流电池中有机氧化还原物种:氧化还原势,化学稳定性和溶解度

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摘要

Organic molecules are currently investigated as redox species for aqueous low-cost redox flow batteries (RFBs). The envisioned features of using organic redox species are low cost and increased flexibility with respect to tailoring redox potential and solubility from molecular engineering of side groups on the organic redox-active species. In this paper 33, mainly quinone-based, compounds are studied experimentially in terms of pH dependent redox potential, solubility and stability, combined with single cell battery RFB tests on selected redox pairs. Data shows that both the solubility and redox potential are determined by the position of the side groups and only to a small extent by the number of side groups. Additionally, the chemical stability and possible degradation mechanisms leading to capacity loss over time are discussed. The main challenge for the development of all-organic RFBs is to identify a redox pair for the positive side with sufficiently high stability and redox potential that enables battery cell potentials above 1?V.
机译:目前研究有机分子作为用于含水低成本氧化还原电池(RFB)的氧化还原物种。使用有机氧化还原物种的设想特征是低成本,并且对于剪裁氧化还原潜力和从有机氧化还原活性物种上的侧基分子工程的溶解度增加了柔韧性。在本文中,主要是基于醌的,在pH依赖性氧化还原电位,溶解性和稳定性方面进行了基于醌类化合物,与所选氧化还原对的单细胞电池RFB检验结合。数据表明,溶解度和氧化还原电位均由侧基的位置确定,并且仅在很小程度上通过侧基的数量。另外,讨论了导致容量损耗的化学稳定性和可能的​​降解机制。所有有机RFBS开发的主要挑战是识别用于正面的氧化还原对,具有足够高的稳定性和氧化还原电位,使得电池电池电位能够高于1?v。

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