Studying Li Dynamics in a Gas-Phase Synthesized Amorphous Oxide by NMR and Impedance Spectroscopy

Author:

Epp Viktor,Brünig Christian1,Binnewies Michael2,Heitjans Paul3,Wilkening Martin4

Affiliation:

1. Leibniz University Hannover, Institute of Inorganic Chemistry, Hannover, Deutschland

2. Leibniz University of Hannover, Institute of Inorganic Chemistry, Hannover, Deutschland

3. Universität Hannover, Institut f. Physikalische Chemie und Elektrochemie, Hannover, Deutschland

4. Leibniz University Hannover, Institute of Phys. Chemistry and Electrochemistry, Hannover, Deutschland

Abstract

Abstract Li diffusion parameters of a structurally disordered Li-Al-Si-oxide prepared by gas-phase synthesis were complementarily investigated by both time-domain NMR techniques and impedance spectroscopy. The first include 7Li NMR spin-lattice relaxation (SLR) measurements in the laboratory as well as in the rotating frame of reference. An analysis of variable-temperature NMR line widths point to an activation energy Ea of approximately 0.6 eV. The value is confirmed by rotating-frame SLR NMR data recorded at approximately 11 kHz. Above room temperature the low-temperature flank of a diffusion-induced rate peak shows up which can be approximated by an Arrhenius law yielding Ea=0.56(1) eV. This is in very good agreement with the result obtained from 7Li spin-alignment echo (SAE) NMR being sensitive to even slower Li dynamics. For comparison, dc-conductivity measurements, probing long-range motions, yield Ea=0.8 eV. Interestingly, low-temperature SAE NMR decay rates point to localized Li motions being characterized with a very small activation energy of only 0.09 eV.

Publisher

Walter de Gruyter GmbH

Subject

Physical and Theoretical Chemistry

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