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A high-energy and low-cost polysulfide/iodide redox flow battery

机译:一种高能,低成本的多硫化物/碘化物氧化还原液流电池

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摘要

Redox flow batteries (RFBs) have been limited by low energy density and high cost. Here, we employ highly soluble, inexpensive and reversible polysulfide and iodide species to demonstrate a high-energy and low-cost all-liquid polysulfide/iodide redox flow battery (PSIB). In contrast to metal-hybrid or semi-solid approaches that are usually adapted for high-energy RFBs, the all-liquid characteristic of the PSIB is crucial to enable practical scale-up development. Combining the achieved energy density (43.1 W h L-catholyteAnolyt(-1)) and the inherent low materials cost of sulfur and iodine compared to vanadium, the PSIB system demonstrates a significantly lower materials cost per kilowatt hour ($85.4 kWh(-1)) compared to the state-of-the-art vanadium based redox flow batteries ($152.0-154.6 kW h(-1)). Operando UV-Visible spectroscopy reveals superior electrochemical reversibility of both electrolytes. With its demonstrated energy density, inherent low material cost and benign chemical natures, the all-liquid PSIB offers a promising solution for high-energy-density and low-cost energy storage applications.
机译:氧化还原液流电池(RFB)受低能量密度和高成本的限制。在这里,我们采用高度可溶,廉价且可逆的多硫化物和碘化物来证明一种高能,低成本的全液体多硫化物/碘化物氧化还原液流电池(PSIB)。与通常适用于高能RFB的金属混合或半固体方法相比,PSIB的全液体特性对于实际扩大规模至关重要。结合实现的能量密度(43.1 W h L-catholyteAnolyt(-1))和与钒相比固有的硫和碘的材料成本低的优势,PSIB系统显示出每千瓦时的材料成本大大降低($ 85.4 kWh(-1) )与最先进的钒基氧化还原液流电池($ 152.0-154.6 kW h(-1))进行比较。 Operando紫外可见光谱显示了两种电解质的优异电化学可逆性。全液体PSIB具有证明的能量密度,固有的低材料成本和良性化学性质,为高能量密度和低成本储能应用提供了有希望的解决方案。

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