首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Lithium Conductivity and Ions Dynamics in LiBH4/SiO2 Solid Electrolytes Studied by Solid-State NMR and Quasi-Elastic Neutron Scattering and Applied in Lithium Sulfur Batteries
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Lithium Conductivity and Ions Dynamics in LiBH4/SiO2 Solid Electrolytes Studied by Solid-State NMR and Quasi-Elastic Neutron Scattering and Applied in Lithium Sulfur Batteries

机译:用固态NMR和准弹性中子散射研究的LibH4 / SiO2固体电解质中的锂电片动力学和锂硫电池

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摘要

Composite solid-state electrolytes based on ball milled LiBH4/SiO2 aerogel exhibit high lithium conductivities, and we have found an optimal weight ratio of 30/70 wt % LiBH4/SiO2 with a conductivity of 0.1 mS cm(-1) at room temperature. We have studied the Li+ and BH4 dynamics using quasi-elastic neutron scattering and solid-state nuclear magnetic resonance and found that only a small fraction (similar to 10%) of the ions have high mobilities, whereas most of the LiBH4 shows behavior similar to macrocrystal line material. The modified LiBH4 is formed from interaction with the SiO2 surface and most probably from reaction with the surface silanol groups. We successfully applied these composite electrolytes in lithium-sulfur solid-state batteries. The batteries show reasonable capacity retention (794 mAh g(-1) sulfur after 10 discharge-charge cycles, Coulombic efficiency of 88.8 +/- 2.7%, and average capacity loss of 7.2% during the first 10 cycles).
机译:基于球磨的LibH4 / SiO2气凝胶的复合固态电解质表现出高锂导电性,并且在室温下发现了30/70wt%LiBH4 / SiO 2的最佳重量比为0.1ms cm(-1)。 我们研究了使用准弹性中子散射和固态核磁共振的Li +和BH4动态,发现只有小部分(类似于10%)的离子具有高司,而大多数LibH4则显示类似于的行为 宏晶线材。 改性的LiBH4由与SiO 2表面的相互作用形成,并且最可能与表面硅烷醇基团的反应形成。 我们在锂 - 硫固态电池中成功地应用了这些复合电解质。 电池显示合理的容量保留(794mAhg(-1)硫在10个放电循环后,库仑效率为88.8 +/- 2.7%,并且在前10个循环期间平均容量损失为7.2%)。

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