Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex
Thorben Krauskopf
1, 2
,
Sokseiha Muy
3
,
Sean P Culver
1, 2
,
Saneyuki Ohno
1, 2
,
O Delaire
4
,
Yang Shao-Horn
3
,
Wolfgang G. Zeier
1, 2
Publication type: Journal Article
Publication date: 2018-10-04
scimago Q1
wos Q1
SJR: 5.554
CiteScore: 22.5
Impact factor: 15.6
ISSN: 00027863, 15205126
PubMed ID:
30284822
General Chemistry
Catalysis
Biochemistry
Colloid and Surface Chemistry
Abstract
Recent work on superionic conductors has demonstrated the influence of lattice dynamics and the softness of the lattice on ionic transport. When examining either the changes in the acoustic phonon spectrum or the whole phonon density of states, both a decreasing activation barrier of migration and a decreasing entropy of migration have been observed, highlighting that the paradigm of "the softer the lattice, the better" does not always hold true. However, both approaches to monitor the changing lattice dynamics probe different frequency ranges of the phonon spectrum, and thus, it is unclear if they are complementary. In this work, we investigate the lattice dynamics of the superionic conductor Na3PS4- xSe x by probing the optical phonon modes and the acoustic phonon modes, as well as the phonon density of states via inelastic neutron scattering. Notably, Raman spectroscopy shows the evolution of multiple local symmetry reduced polyhedral species, which likely affect the local diffusion pathways. Meanwhile, density functional theory and the ionic transport data are used to compare the different approaches for assessing the lattice dynamics. This work shows that, while acoustic and inelastic methods may be used to experimentally assess the overall changing lattice stiffness, calculations of the average vibrational energies between the mobile ions and the anion framework are important to assess and computationally screen for ionic conductors.
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155
Total citations:
155
Citations from 2024:
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(27.74%)
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Krauskopf T. et al. Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex // Journal of the American Chemical Society. 2018. Vol. 140. No. 43. pp. 14464-14473.
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Krauskopf T., Muy S., Culver S. P., Ohno S., Delaire O., Shao-Horn Y., Zeier W. G. Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex // Journal of the American Chemical Society. 2018. Vol. 140. No. 43. pp. 14464-14473.
Cite this
RIS
Copy
TY - JOUR
DO - 10.1021/jacs.8b09340
UR - https://doi.org/10.1021/jacs.8b09340
TI - Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex
T2 - Journal of the American Chemical Society
AU - Krauskopf, Thorben
AU - Muy, Sokseiha
AU - Culver, Sean P
AU - Ohno, Saneyuki
AU - Delaire, O
AU - Shao-Horn, Yang
AU - Zeier, Wolfgang G.
PY - 2018
DA - 2018/10/04
PB - American Chemical Society (ACS)
SP - 14464-14473
IS - 43
VL - 140
PMID - 30284822
SN - 0002-7863
SN - 1520-5126
ER -
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BibTex (up to 50 authors)
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@article{2018_Krauskopf,
author = {Thorben Krauskopf and Sokseiha Muy and Sean P Culver and Saneyuki Ohno and O Delaire and Yang Shao-Horn and Wolfgang G. Zeier},
title = {Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex},
journal = {Journal of the American Chemical Society},
year = {2018},
volume = {140},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/jacs.8b09340},
number = {43},
pages = {14464--14473},
doi = {10.1021/jacs.8b09340}
}
Cite this
MLA
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Krauskopf, Thorben, et al. “Comparing the Descriptors for Investigating the Influence of Lattice Dynamics on Ionic Transport Using the Superionic Conductor Na3PS4–xSex.” Journal of the American Chemical Society, vol. 140, no. 43, Oct. 2018, pp. 14464-14473. https://doi.org/10.1021/jacs.8b09340.