首页> 外文期刊>Advanced energy materials >New Na-Ion Solid Electrolytes Na_(4−x)Sn_(1−x)Sb_xS_4 (0.02 ≤ x ≤ 0.33) for All-Solid-State Na-Ion Batteries
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New Na-Ion Solid Electrolytes Na_(4−x)Sn_(1−x)Sb_xS_4 (0.02 ≤ x ≤ 0.33) for All-Solid-State Na-Ion Batteries

机译:适用于全固态钠离子电池的新型钠离子固体电解质Na_(4-x)Sn_(1-x)Sb_xS_4(0.02≤x≤0.33)

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摘要

Sulfide Na-ion solid electrolytes (SEs) are key to enable room-temperature operable all-solid-state Na-ion batteries that are attractive for large-scale energy storage applications. To date, few sulfide Na-ion SEs have been developed and most of the SEs developed contain P and suffer from poor chemical stability. Herein, discovery of a new structural class of tetragonal Na4-xSn1-xSbxS4 (0.02 x 0.33) with space group I4(1)/acd is described. The evolution of a new phase, distinctly different from Na4SnS4 or Na3SbS4, allows fast ionic conduction in 3D pathways (0.2-0.5 mS cm(-1) at 30 degrees C). Moreover, their excellent air stability and reversible dissolution in water and precipitation are highlighted. Specifically, TiS2/Na-Sn all-solid-state Na-ion batteries using Na3.75Sn0.75Sb0.25S4 demonstrates high capacity (201 mA h (g of TiS2)(-1)) with excellent reversibility.
机译:硫化钠离子固体电解质(SE)是实现室温可操作的全固态钠离子电池的关键,这对于大规模储能应用具有吸引力。迄今为止,几乎没有开发出硫化物Na离子SE,而且开发的大多数SE都含有P,并且化学稳定性差。在此,描述了发现具有空间群I4(1)/ acd的四方Na4-xSn1-xSbxS4(0.02 x 0.33)的新结构类别的发现。一个新的阶段,与Na4SnS4或Na3SbS4明显不同的演变,允许在3D途径中快速离子传导(在30摄氏度下为0.2-0.5 mS cm(-1))。此外,其出色的空气稳定性以及在水中和沉淀中的可逆溶解性也得到了强调。具体而言,使用Na3.75Sn0.75Sb0.25S4的TiS2 / Na-Sn全固态Na离子电池表现出高容量(201 mA h(TiS2的克数)(-1))和出色的可逆性。

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