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Endogenous 17O Dynamic Nuclear Polarization of Gd-Doped CeO2from 100 to 370 K

Authors :
Hope, Michael A.
Björgvinsdóttir, Snædís
Halat, David M.
Menzildjian, Georges
Wang, Zhuoran
Zhang, Bowen
MacManus-Driscoll, Judith L.
Lesage, Anne
Lelli, Moreno
Emsley, Lyndon
Grey, Clare P.
Source :
The Journal of Physical Chemistry - Part C; September 2021, Vol. 125 Issue: 34 p18799-18809, 11p
Publication Year :
2021

Abstract

17O NMR is an invaluable tool to study the structure and dynamics of oxide materials but remains challenging to apply in many systems. Even with isotopic enrichment, studies of samples with low masses and/or concentrations of the active species, such as thin films or interfaces, are limited by low sensitivity. Here, we show how endogenous dynamic nuclear polarization (DNP) can dramatically improve the sensitivity in the oxide-ion conductor Gd-doped CeO2, with a 17O enhancement factor of 652 at 100 K. This is the highest enhancement observed so far by endogenous DNP or Gd3+DNP, which is explained in terms of the electron paramagnetic resonance characteristics. The DNP properties are studied as a function of Gd concentration for both enriched and natural-abundance samples, and the buildup behavior shows that spin diffusion in 17O-enriched samples improves sensitivity by relaying hyperpolarization throughout the sample. Notably, efficient hyperpolarization could still be achieved at elevated temperatures, with enhancement factors of 320 at room temperature and 150 at 370 K, paving the way for the characterization of materials under operational conditions. Finally, the application of endogenous Gd3+DNP is illustrated with the study of interfaces in vertically aligned nanocomposite thin films composed of Gd-CeO2nanopillars embedded in a SrTiO3matrix, where DNP affords selective enhancement of the different phases and enables a previously infeasible two-dimensional correlation experiment to be performed, showing spin diffusion between Gd-CeO2and the solid–solid interface.

Details

Language :
English
ISSN :
19327447 and 19327455
Volume :
125
Issue :
34
Database :
Supplemental Index
Journal :
The Journal of Physical Chemistry - Part C
Publication Type :
Periodical
Accession number :
ejs57450276
Full Text :
https://doi.org/10.1021/acs.jpcc.1c04479