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一种用于水系铁液流电池的双配体螯合策略:制备具有超高循环稳定性的铁络合物阳极电解液

A Double-ligand Chelating Strategy to Iron Complex Anolytes with Ultrahigh Cyclability for Aqueous Iron Flow Batteries.

作者信息

Wang Shaocong, Ma Long, Niu Shiyang, Sun Shibo, Liu Yong, Cheng Yuanhui

机构信息

State Key Laboratory of Organic-Inorganic Composites, College of Chemical Engineering, Beijing University of Chemical Technology, Beijing, 100029, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2024 Feb 26;63(9):e202316593. doi: 10.1002/anie.202316593. Epub 2024 Jan 19.

Abstract

Aqueous all-iron flow batteries (AIFBs) are attractive for large-scale and long-term energy storage due to their extremely low cost and safety features. To accelerate commercial application, a long cyclable and reversible iron anolyte is expected to address the critical barriers, namely iron dendrite growth and hydrogen evolution reaction (HER). Herein, we report a robust iron complex with triethanolamine (TEA) and 2-methylimidazole (MM) double ligands. By introducing two ligands into one iron center, the binding energy of the complex increases, making it more stable in the charge-discharge reactions. The Fe(TEA)MM complex achieves reversible and stable redox between Fe and Fe , without metallic iron growth and HER. AIFBs based on this anolyte perform a high energy efficiency of 80.5 % at 80 mA cm and exhibit a record durability among reported AIFBs. The efficiency and capacity retain nearly 100 % after 1,400 cycles. The capital cost of this AIFB is $ 33.2 kWh (e.g., 20 h duration), cheaper than Li-ion battery and vanadium flow battery. This double-ligand chelating strategy not only solves the current problems faced by AIFBs, but also provides an insight for further improving the cycling stability of other flow batteries.

摘要

水系全铁液流电池(AIFBs)因其极低的成本和安全特性,在大规模和长期储能方面具有吸引力。为加速商业应用,一种长循环且可逆的铁阳极电解液有望解决关键障碍,即铁枝晶生长和析氢反应(HER)。在此,我们报道了一种含有三乙醇胺(TEA)和2 - 甲基咪唑(MM)双配体的稳健铁配合物。通过将两种配体引入一个铁中心,配合物的结合能增加,使其在充放电反应中更稳定。Fe(TEA)MM配合物实现了Fe与Fe 之间的可逆且稳定的氧化还原,无金属铁生长和析氢反应。基于这种阳极电解液的AIFBs在80 mA cm 时具有80.5%的高能效,并且在已报道的AIFBs中表现出创纪录的耐久性。在1400次循环后,效率和容量保留近100%。这种AIFB的资本成本为33.2美元/千瓦时(例如,持续时间为20小时),比锂离子电池和钒液流电池更便宜。这种双配体螯合策略不仅解决了AIFBs目前面临的问题,还为进一步提高其他液流电池的循环稳定性提供了思路。

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