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固态核磁共振揭示硫代磷酸锂基固体电解质的铝离子掺杂机制

Aluminium ion doping mechanism of lithium thiophosphate based solid electrolytes revealed with solid-state NMR.

作者信息

Qu Hongtao, Wang Yantao, Ju Jiangwei, van Eck Ernst R H, Cui Guanglei, Kentgens Arno P M

机构信息

Magnetic Resonance Research Center, Institute for Molecules and Materials, Radboud University, Heyendaalseweg 135, 6525 AJ Nijmegen, The Netherlands.

Qingdao Industrial Energy Storage Research Institute, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, People's Republic of China.

出版信息

Phys Chem Chem Phys. 2023 Feb 8;25(6):4997-5006. doi: 10.1039/d2cp04670a.

Abstract

We investigate the impact of Al incorporation on the structure and dynamics of Al-doped lithium thiophosphates (LiAlPS) based on β-LiPS. Al and Li magic-angle spinning NMR spectra confirm that Al ions occupy octahedral sites in the structure. Quantitative analyses of Al NMR spectra show that the maximum Al incorporation is = 0.06 in LiAlPS. The ionic conductivity of β-LiPS 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 P 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-LiPS 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.

摘要

我们研究了铝掺杂对基于β-LiPS的铝掺杂硫代磷酸锂(LiAlPS)结构和动力学的影响。铝和锂的魔角旋转核磁共振光谱证实,铝离子占据结构中的八面体位置。铝核磁共振光谱的定量分析表明,LiAlPS中最大铝掺杂量为 = 0.06。由于铝掺杂,β-LiPS的离子电导率提高了3倍以上。如磷核磁共振光谱和粉末X射线衍射所示,铝掺杂水平的进一步提高导致形成由多个晶相和畸变相组成的更复杂材料。因此,出现了新的锂离子扩散途径,导致室温下具有非常高的离子电导率。核磁共振弛豫测量表明,铝掺杂后β-LiPS中锂离子长程扩散的活化能垒几乎不变,但由于铝掺杂,运动窄化的起始温度显著降低。然而,随后形成的多相材料中的活化能垒显著降低,这表明存在不同的、更有效的锂离子传导途径。

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