Local Structure in Disordered Melilite Revealed by Ultrahigh Field 71Ga and 139La Solid‐State Nuclear Magnetic Resonance Spectroscopy

Author:

Corti Lucia12ORCID,Hung Ivan3,Venkatesh Amrit3,Gor'kov Peter L.3,Gan Zhehong3,Claridge John B.12,Rosseinsky Matthew J.12,Blanc Frédéric124ORCID

Affiliation:

1. Department of Chemistry University of Liverpool Liverpool L69 7ZD UK

2. Leverhulme Research Centre for Functional Materials Design Materials Innovation Factory University of Liverpool Liverpool L69 7ZD UK

3. National High Magnetic Field Laboratory Florida State University Tallahassee FL 32310 USA

4. Stephenson Institute for Renewable Energy University of Liverpool Liverpool L69 7ZF UK

Abstract

AbstractMultinuclear Nuclear Magnetic Resonance (NMR) spectroscopy of quadrupolar nuclei at ultrahigh magnetic field provides compelling insight into the short‐range structure in a family of fast oxide ion electrolytes with La1+xSr1‐xGa3O7+0.5x melilite structure. The striking resolution enhancement in the solid‐state 71Ga NMR spectra measured with the world's unique series connected hybrid magnet operating at 35.2 T distinctly resolves Ga sites in four‐ and five‐fold coordination environments. Detection of five‐coordinate Ga centers in the site‐disordered La1.54Sr0.46Ga3O7.27 melilite is critical given that the GaO5 unit accommodates interstitial oxide ions and provides excellent transport properties. This work highlights the importance of ultrahigh magnetic fields for the detection of otherwise broad spectral features in systems containing quadrupolar nuclei and the potential of ensemble‐based computational approaches for the interpretation of NMR data acquired for site‐disordered materials.

Funder

University of Liverpool

National High Magnetic Field Laboratory

National Science Foundation

Publisher

Wiley

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