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On the Thermodynamics, the Role of the Carbon Cathode, and the Cycle Life of the Sodium Superoxide (NaO2) Battery

机译:关于热力学,碳阴极的作用以及超氧化钠(NaO2)电池的循环寿命

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摘要

Batteries based on the cell reaction between alkali metals and oxygen are highly attractive for energy storage due to their superior theoretical energy density. However, despite continuous progress, fundamental challenges in the further development of these cell systems remain. Understanding the oxygen electrode reaction and improving cycle life, while at the same time maximizing the practical energy density, are some of the most important issues that need to be addressed. Here, the product formation in aprotic sodium-oxygen cells is studied and it is shown how cycle life and practical capacities can be improved. Different cell reactions (leading to either NaO2 or Na2O2 as discharge products) have recently been reported. To understand whether the carbon structure or the local current density has any influence on the product stoichiometry or the cell performance, several carbon materials with a broad range in properties are tested. Phase-pure NaO2 is always found as a discharge product, but capacities range from 300 to values as high as 4000 mAh g(C)−1 depending on the type of carbon. More importantly, the cycle life of Na/O2 cells can be largely improved by shallow cycling, steadily yielding capacities of 1666 mAh g(C)−1 for at least 60 cycles using a Ketjen black carbon electrode.
机译:基于碱金属和氧气之间的电池反应的电池由于其优异的理论能量密度而非常受能量存储的吸引。然而,尽管取得了持续的进步,但是在这些细胞系统的进一步开发中仍然存在根本的挑战。了解氧电极反应和改善循环寿命,同时使实际能量密度最大化,是需要解决的一些最重要的问题。在此,研究了在质子惰性钠-氧电池中的产物形成,并显示了如何改善循环寿命和实用能力。最近已经报道了不同的​​细胞反应(导致放电产物为NaO2或Na2O2)。为了了解碳结构或局部电流密度是否对产品化学计量或电池性能有影响,测试了几种具有广泛性能的碳材料。纯相NaO2始终是放电产物,但容量取决于碳的类型,范围从300到高达4000 mAh g(C)-1。更重要的是,Na / O2电池的循环寿命可以通过浅循环来大大提高,使用科琴黑碳电极至少连续60次循环可稳定产生1666 mAh g(C)-1的容量。

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