Skip to main content
Journal cover image

Tuning mobility and stability of lithium ion conductors based on lattice dynamics

Publication ,  Journal Article
Muy, S; Bachman, JC; Giordano, L; Chang, HH; Abernathy, DL; Bansal, D; Delaire, O; Hori, S; Kanno, R; Maglia, F; Lupart, S; Lamp, P; Shao-Horn, Y
Published in: Energy and Environmental Science
April 1, 2018

Lithium ion conductivity in many structural families can be tuned by many orders of magnitude, with some rivaling that of liquid electrolytes at room temperature. Unfortunately, fast lithium conductors exhibit poor stability against lithium battery electrodes. In this article, we report a fundamentally new approach to alter ion mobility and stability against oxidation of lithium ion conductors using lattice dynamics. By combining inelastic neutron scattering measurements with density functional theory, fast lithium conductors were shown to have low lithium vibration frequency or low center of lithium phonon density of states. On the other hand, lowering anion phonon densities of states reduces the stability against electrochemical oxidation. Olivines with low lithium band centers but high anion band centers are promising lithium ion conductors with high ion conductivity and stability. Such findings highlight new strategies in controlling lattice dynamics to discover new lithium ion conductors with enhanced conductivity and stability.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Energy and Environmental Science

DOI

EISSN

1754-5706

ISSN

1754-5692

Publication Date

April 1, 2018

Volume

11

Issue

4

Start / End Page

850 / 859

Related Subject Headings

  • Energy
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Muy, S., Bachman, J. C., Giordano, L., Chang, H. H., Abernathy, D. L., Bansal, D., … Shao-Horn, Y. (2018). Tuning mobility and stability of lithium ion conductors based on lattice dynamics. Energy and Environmental Science, 11(4), 850–859. https://doi.org/10.1039/c7ee03364h
Muy, S., J. C. Bachman, L. Giordano, H. H. Chang, D. L. Abernathy, D. Bansal, O. Delaire, et al. “Tuning mobility and stability of lithium ion conductors based on lattice dynamics.” Energy and Environmental Science 11, no. 4 (April 1, 2018): 850–59. https://doi.org/10.1039/c7ee03364h.
Muy S, Bachman JC, Giordano L, Chang HH, Abernathy DL, Bansal D, et al. Tuning mobility and stability of lithium ion conductors based on lattice dynamics. Energy and Environmental Science. 2018 Apr 1;11(4):850–9.
Muy, S., et al. “Tuning mobility and stability of lithium ion conductors based on lattice dynamics.” Energy and Environmental Science, vol. 11, no. 4, Apr. 2018, pp. 850–59. Scopus, doi:10.1039/c7ee03364h.
Muy S, Bachman JC, Giordano L, Chang HH, Abernathy DL, Bansal D, Delaire O, Hori S, Kanno R, Maglia F, Lupart S, Lamp P, Shao-Horn Y. Tuning mobility and stability of lithium ion conductors based on lattice dynamics. Energy and Environmental Science. 2018 Apr 1;11(4):850–859.
Journal cover image

Published In

Energy and Environmental Science

DOI

EISSN

1754-5706

ISSN

1754-5692

Publication Date

April 1, 2018

Volume

11

Issue

4

Start / End Page

850 / 859

Related Subject Headings

  • Energy