固态核磁共振
快离子导体
离子电导率
硫代磷酸盐
化学
核磁共振谱数据库
离子
魔角纺纱
松弛法
锂(药物)
电导率
离子键合
电解质
核磁共振波谱
物理化学
核磁共振
谱线
立体化学
自旋回波
有机化学
医学
物理
电极
天文
磁共振成像
放射科
内分泌学
作者
Hongtao Qu,Yantao Wang,Jiangwei Ju,Ernst R H van Eck,Guanglei Cui,Arno P. M. Kentgens
摘要
We investigate the impact of Al incorporation on the structure and dynamics of Al-doped lithium thiophosphates (Li3-3xAlxPS4) based on β-Li3PS4. 27Al and 6Li magic-angle spinning NMR spectra confirm that Al3+ ions occupy octahedral sites in the structure. Quantitative analyses of 27Al NMR spectra show that the maximum Al incorporation is x = 0.06 in Li3-3xAlxPS4. The ionic conductivity of β-Li3PS4 is enhanced by over a factor 3 due to Al incorporation. Further increase of the Al doping level leads to the formation of a more complicated material consisting of multiple crystalline and distorted phases as indicated by 31P NMR spectra and powder X-ray diffraction. Consequently, novel Li ion diffusion pathways develop leading to a very high ionic conductivity at room temperature. NMR relaxometry shows that the activation barrier for long-range Li ion diffusion in β-Li3PS4 hardly changes upon Al incorporation, but the onset temperature for motional narrowing comes down significantly due to Al doping. The activation barrier in the subsequently formed multiphase material decreases significantly, however, indicating a different more efficient Li ion conduction pathway.
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