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长循环水系有机氧化还原流电池(AORFB)实现可持续与安全的储能。

Long-Cycling Aqueous Organic Redox Flow Battery (AORFB) toward Sustainable and Safe Energy Storage.

机构信息

The Department of Chemistry and Biochemistry, Utah State University , Logan, Utah 84322-1400, United States.

出版信息

J Am Chem Soc. 2017 Jan 25;139(3):1207-1214. doi: 10.1021/jacs.6b10984. Epub 2017 Jan 12.

Abstract

Redox flow batteries (RFBs) are a viable technology to store renewable energy in the form of electricity that can be supplied to electricity grids. However, widespread implementation of traditional RFBs, such as vanadium and Zn-Br RFBs, is limited due to a number of challenges related to materials, including low abundance and high costs of redox-active metals, expensive separators, active material crossover, and corrosive and hazardous electrolytes. To address these challenges, we demonstrate a neutral aqueous organic redox flow battery (AORFB) technology utilizing a newly designed cathode electrolyte containing a highly water-soluble ferrocene molecule. Specifically, water-soluble (ferrocenylmethyl)trimethylammonium chloride (FcNCl, 4.0 M in HO, 107.2 Ah/L, and 3.0 M in 2.0 NaCl, 80.4 Ah/L) and N-ferrocenylmethyl-N,N,N,N,N-pentamethylpropane-1,2-diaminium dibromide, (FcNBr, 3.1 M in HO, 83.1 Ah/L, and 2.0 M in 2.0 M NaCl, 53.5 Ah/L) were synthesized through structural decoration of hydrophobic ferrocene with synergetic hydrophilic functionalities including an ammonium cation group and a halide anion. When paired with methyl viologen (MV) as an anolyte, resulting FcNCl/MV and FcNBr/MV AORFBs were operated in noncorrosive neutral NaCl supporting electrolytes using a low-cost anion-exchange membrane. These ferrocene/MV AORFBs are characterized as having high theoretical energy density (45.5 Wh/L) and excellent cycling performance from 40 to 100 mA/cm. Notably, the FcNCl/MV AORFBs (demonstrated at 7.0 and 9.9 Wh/L) exhibited unprecedented long cycling performance, 700 cycles at 60 mA/cm with 99.99% capacity retention per cycle, and delivered power density up to 125 mW/cm. These AORFBs are built from earth-abundant elements and are environmentally benign, thus representing a promising choice for sustainable and safe energy storage.

摘要

氧化还原液流电池(RFB)是一种可行的技术,可以将电能以可再生能源的形式储存起来,并供应给电网。然而,传统的 RFB 技术,如钒和 Zn-Br RFB,由于与材料相关的许多挑战,包括氧化还原活性金属的丰度低和成本高、昂贵的分离器、活性物质的交叉、腐蚀性和危害性电解质,其广泛应用受到限制。为了解决这些挑战,我们展示了一种利用新设计的阴极电解质的中性水系有机氧化还原液流电池(AORFB)技术,该电解质含有一种高水溶性的二茂铁分子。具体来说,水溶性(二茂铁基甲基)三甲基氯化铵(FcNCl,在 H2O 中为 4.0 M,107.2 Ah/L,在 2.0 M NaCl 中为 3.0 M,80.4 Ah/L)和 N-二茂铁基-N,N,N,N,N-五甲基丙烷-1,2-二胺二溴化物(FcNBr,在 H2O 中为 3.1 M,83.1 Ah/L,在 2.0 M NaCl 中为 2.0 M,53.5 Ah/L)是通过将疏水性二茂铁与协同亲水性官能团(包括铵阳离子基团和卤化物阴离子)进行结构修饰合成的。当与甲紫(MV)作为阳极电解液配对时,得到的 FcNCl/MV 和 FcNBr/MV AORFB 在使用低成本阴离子交换膜的非腐蚀性中性 NaCl 支撑电解质中运行。这些二茂铁/MV AORFB 的特点是具有高理论能量密度(45.5 Wh/L)和出色的循环性能,从 40 到 100 mA/cm。值得注意的是,FcNCl/MV AORFB(在 7.0 和 9.9 Wh/L 下进行了演示)表现出前所未有的长循环性能,在 60 mA/cm 下循环 700 次,每个循环的容量保持率为 99.99%,并提供高达 125 mW/cm 的功率密度。这些 AORFB 由丰富的元素组成,对环境无害,因此是可持续和安全储能的有前途的选择。

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