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首页> 外文期刊>Chemical Physics Letters >Visualization of conduction pathways in lithium superionic conductors: Li_2S-P_2S_5 glasses and Li_7P _3S_(11) glass-ceramic
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Visualization of conduction pathways in lithium superionic conductors: Li_2S-P_2S_5 glasses and Li_7P _3S_(11) glass-ceramic

机译:锂超离子导体中的传导途径的可视化:Li_2S-P_2S_5玻璃和Li_7P _3S_(11)玻璃陶瓷

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摘要

For (Li_2S)_x(P_2S_5)_(100-x) glasses and Li_7P_3S _(11) glass-ceramic, which are well-known lithium superionic conductors, the conduction pathways of lithium ions were predicted and visualized by combining reverse Monte Carlo (RMC) modeling and the bond valence sum (BVS) method using synchrotron X-ray and time-of-flight neutron diffraction data. The conduction pathways of the lithium ions could be classified into two types: lithium 'stable' and 'metastable' regions. In addition, it was found that a significant relationship exists between the topology of the conduction pathways of the lithium ions and the activation energy of the electrical conduction.
机译:对于(Li_2S)_x(P_2S_5)_(100-x)玻璃和Li_7P_3S_(11)玻璃陶瓷,它们是众所周知的锂超离子导体,通过结合反向蒙特卡罗( RMC)建模和键合价和(BVS)方法,使用同步加速器X射线和飞行时间中子衍射数据。锂离子的传导途径可分为两种类型:锂的“稳定”区域和“可转移”区域。另外,发现锂离子的传导路径的拓扑与电导的活化能之间存在显着的关系。

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