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Unveiling the Role of Tetrabutylammonium and Cesium Bulky Cations in Enhancing Na-O_2 Battery Performance

机译:揭示四丁基铵和铯大块阳离子在提高钠O_2电池性能中的作用

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摘要

The use of two types of bulky cations, tetrabutylammonium (TBA(+)) and Cs+, as electrolyte additives in Na-O-2 batteries is investigated. These cations facilitate the stabilization of sodium superoxide in the electrolyte, promoting the solution-mediated pathway. Both the addition of TBA(+) and Cs+ favor the growth of larger NaO2 cubes than in the case of the electrolyte containing only sodium salt, particularly in the case of Cs+. In terms of full discharge capacity, both additives lead to an increase in the discharge capacity, which is greater in Cs+ (50 enhancement). TBA(+) also provides an improved stabilization of superoxide; nevertheless, the interaction is not as strong as in the case of Cs+ due to the steric hindrance set by the alkyl groups. The presence of these additives not only affects the NaO2 formation mechanism, but also influences the nature of the solid electrolyte interphase. The presence of Cs+ generates a more stable solid-electrolyte interphase, which increases the cycle life of Na-O-2 batteries. Overall, new insights are provided to control the growth of the discharge products, modify the oxygen reduction reaction mechanism, and protect the Na metal anode surface by adding bulky monovalent cations in the electrolyte formulation.
机译:研究了在Na-O-2电池中使用两种类型的大块阳离子,即四丁基铵(TBA(+))和Cs+作为电解质添加剂。这些阳离子有助于电解质中超氧化钠的稳定,促进溶液介导的途径。TBA(+) 和 Cs+ 的添加都有利于比仅含有钠盐的电解质(尤其是在 Cs+ 的情况下)生长更大的 NaO2 立方体。在完全放电容量方面,两种添加剂都会导致放电容量的增加,在Cs+中更大(增强50%)。TBA(+)还改善了超氧化物的稳定性;然而,由于烷基设定的空间位阻,相互作用不如 Cs+ 的情况强。这些添加剂的存在不仅影响NaO2的形成机理,还影响固体电解质界面的性质。Cs+的存在会产生更稳定的固体电解质界面,从而延长Na-O-2电池的循环寿命。综上所述,通过在电解液配方中添加大量一价阳离子,为控制放电产物的生长、改变氧还原反应机理以及保护Na金属阳极表面提供了新的见解。

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