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Rational Electrochemical Recycling of Spent LiFePO4 and LiCoO2 Batteries to Fe2O3/CoPi Photoanodes for Water Oxidation

机译:合理的电化学回收用于Fe2O3 / Copi光阳池的废寿命4和LiCoO2电池进行水氧化

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摘要

Immense utilization of lithium-ion batteries displays great advantages in sustainable energy conversion and storage in recent decades, resulting in a large amount of disposal of spent batteries to the environment. The recycling of these spent batteries into refurbished ones or to other functional materials will not only reduce the environmental burdens but also provide new energy storage/conversion devices. One of the great challenges is that their applications usually suffer from impurities from the waste. Here, we developed an electrochemical recycling method to deposit Fe films on F-doped tin oxide substrates at -1.2 to -0.7 V versus the reversible hydrogen electrode directly using the oxalic leaching solution from the spent LiFePO4 cathode, which quickly converted to hematite films in air at 770 degrees C. Further, the cobalt phosphate (CoPi)-based catalyst was photoelectrochemically deposited on these hematite films by using the citric leaching solution from the spent LiCoO2. Both the bare hematite and hematite/CoPi photoanodes demonstrated high power conversion efficiencies for water oxidation at 0.053 and 0.13% in 1 M NaOH, respectively, suggesting a promising and robust method for solid waste recycling.
机译:锂离子电池的巨大利用在近几十年内在可持续的能源转换和储存方面具有很大的优势,导致花费大量处理的花电器到环境中。将这些花电池再循环到翻新的电池或其他功能材料中不仅可以减少环境负担,而且还提供新的能量存储/转换装置。其中一个巨大的挑战是,他们的应用通常遭受废物中的杂质。在此,我们开发了一种电化学回收方法,将Fe掺杂的氧化锡底物上的Fe膜沉积在-1.2至-0.7V与可逆氢电极上,直接使用来自废的Lifepo4阴极的草原浸出溶液,该电极快速转化为赤铁矿薄膜进一步,通过使用来自Spent LiCoO 2的柠檬酸浸出溶液,空气在770℃下的空气。裸赤铁矿和赤铁矿/ COPI光电片分别显示出水氧化的高功率转换效率,分别为0.053和0.13%,在1米NaOH中,表明固体废物再循环的有希望和稳健的方法。

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