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首页> 外文期刊>Solid state ionics >Aprotic Li-O_2 cells: Gas diffusion layer (GDL) as catalyst free cathode and tetraglyme/LiClO_4 as electrolyte
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Aprotic Li-O_2 cells: Gas diffusion layer (GDL) as catalyst free cathode and tetraglyme/LiClO_4 as electrolyte

机译:非质子型Li-O_2电池:气体扩散层(GDL)作为无催化剂的阴极,四甘醇二甲醚/ LiClO_4作为电解质

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摘要

High performing Li-O_2 cells are assembled using a commercially available gas diffusion layer (GDL) as catalyst free cathode and tetraglyme/LiClO_4 as aprotic electrolyte, and their electrochemical performances are investigated. The potential/time bound electrochemical characterization at different discharge rates and depths is performed along with ex situ analyses using techniques such as X-ray diffraction and FESEM. Among the two different GDLs investigated, the one with standard microporous layer is promising as high capacity cathode. Cell charge/discharge capability was evaluated and the results strongly support a discharge mechanismwhich mainly involves Li_2O_2 formation/dissolution at the cathode. The studies by XRD confirmed the existence of Li_2O_2 particles as the only detected product on the discharged cathodewhich is deposited and grown up at the surface aswell as inside the microporous layer. The cell with GDL cathode maintains a very good cyclability under potential/time controlled mode with minimum amount of electrolyte decomposed products.
机译:使用市售的气体扩散层(GDL)作为无催化剂阴极和四甘醇二甲醚/ LiClO_4作为非质子电解质组装高性能Li-O_2电池,并研究了它们的电化学性能。使用诸如X射线衍射和FESEM的技术进行异位分析,并在不同的放电速率和深度下进行电势/时间限制的电化学表征。在研究的两种不同的GDL中,具有标准微孔层的一种有望成为高容量阴极。对电池的充电/放电能力进行了评估,结果强烈支持了一种放电机理,该机理主要涉及Li_2O_2在阴极的形成/溶解。 XRD的研究证实,Li_2O_2颗粒是放电阴极上唯一检测到的产物,它沉积在微孔层的表面以及内部并长大。带有GDL阴极的电池在电势/时间控制模式下保持了很好的循环能力,且电解质分解产物的量最少。

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