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首页> 外文期刊>Journal of power sources >A mixed anion hydroborate/carba-hydroborate as a room temperature Na-ion solid electrolyte
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A mixed anion hydroborate/carba-hydroborate as a room temperature Na-ion solid electrolyte

机译:氢硼酸根/碳氢硼酸根混合阴离子作为室温钠离子固体电解质

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摘要

The novel compound Na2-x(CB11H12)(x)(B12H12)(1-x) shows a fast ionic Na conductivity of 2 mS cm(-1) at room temperature, reaching the superionic regime above 333 K. A low activation energy of 314 meV, in a thermodynamically and electrochemically stable structure, suggest its usage as a potential solid electrolyte in future all solid Na-ion batteries. Density functional theory simulations indicate the heterovalent anionic mixing to be the responsible in stabilizing a bcc structure, which allows a facile Na+ diffusion already at room temperature. Cyclic voltammetry measurement with a tailored setup for solid-state electrolytes reveals a wide operating window (up to 4.1 V vs. Na+/Na). The symmetrical cell featuring Na-Sn alloy-based electrodes shows reversible Na+ shuttling with limited polarization after more than 700 operating hours.
机译:新型化合物Na2-x(CB11H12)(x)(B12H12)(1-x)在室温下显示2 mS cm(-1)的快速离子Na电导率,在333 K以上达到超离子态。低活化能在热力学和电化学上稳定的314 meV的电池中,建议将其用作未来所有固态Na离子电池的潜在固态电解质。密度泛函理论模拟表明,杂原子阴离子混合是稳定bcc结构的原因,这种结构允许在室温下容易地扩散Na +。量身定制的固态电解质循环伏安法测量显示出宽广的工作窗口(相对于Na + / Na高达4.1 V)。经过700多个工作小时后,具有基于Na-Sn合金的电极的对称电池显示出可逆的Na +穿梭和有限的极化。

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