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首页> 外文期刊>Chemistry of Materials: A Publication of the American Chemistry Society >Highly Stable Iron- and Manganese-Based Cathodes for Long-Lasting Sodium Rechargeable Batteries
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Highly Stable Iron- and Manganese-Based Cathodes for Long-Lasting Sodium Rechargeable Batteries

机译:持久耐用的钠可充电电池的高度稳定的铁和锰基阴极

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The development of long-lasting and low-cost rechargeable batteries lies at the heart of the success of large-scale energy storage systems for various applications. Here, we introduce Fe- and Mn-based Na rechargeable battery cathodes that can stably cycle more than 3000 times. The new cathode is based on the solid-solution phases of Na4MnxFe3-x(PO4)(2)-(P2O7) (x = 1 or 2) that we successfully synthesized for the first time. Electrochemical analysis and ex situ structural investigation reveal that the electrodes operate via a one phase reaction upon charging and discharging with a remarkably low volume change of 2.1% for Na4MnFe2(PO4)(P2O7), which is one of the lowest values among Na battery cathodes reported thus far. With merits including an open framework structure and a small volume change, a stable cycle performance up to 3000 cycles can be achieved at 1C and room temperature, and almost 70% of the capacity at C/20 can be obtained at 20C. We believe that these materials are strong competitors for large-scale Na-ion battery cathodes based on their low costs, long-term cycle stability, and high energy density.
机译:持久且低成本的可充电电池的开发是各种应用的大型储能系统成功的核心。在这里,我们介绍可以稳定循环3000次以上的基于Fe和Mn的Na可充电电池正极。新阴极基于我们首次成功合成的Na4MnxFe3-x(PO4)(2)-(P2O7)(x = 1或2)的固溶相。电化学分析和非原位结构研究表明,电极在充电和放电时通过单相反应运行,Na4MnFe2(PO4)(P2O7)的体积变化极低,仅为2.1%,这是Na电池阴极中最低的值之一到目前为止的报道。由于具有开放式框架结构和体积变化小的优点,在1C和室温下可实现高达3000个循环的稳定循环性能,而在20°C时可获得近70%的C / 20容量。我们认为,这些材料具有低成本,长期循环稳定性和高能量密度的特性,因此它们是大型Na离子电池正极的强大竞争者。

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