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Design of Li[subscript 1+2x]Zn[subscript 1−x]PS[subscript 4], a New Lithium Ion Conductor

Authors :
Massachusetts Institute of Technology. Department of Materials Science and Engineering
Richards, William D
Wang, Yan
Kim, Jae Chul
Ceder, Gerbrand
Miara, Lincoln J.
Massachusetts Institute of Technology. Department of Materials Science and Engineering
Richards, William D
Wang, Yan
Kim, Jae Chul
Ceder, Gerbrand
Miara, Lincoln J.
Source :
Royal Society of Chemistry
Publication Year :
2017

Abstract

Recent theoretical work has uncovered that a body-centered-cubic (bcc) anion arrangement leads to high ionic conductivity in a number of fast lithium-ion conducting materials. Using this structural feature as a screening criterion, we find that the I[4 with combining macron] material LiZnPS[subscript 4] contains such a framework and has the potential for very high ionic conductivity. In this work, we apply ab initio computational techniques to investigate in detail the ionic conductivity and defect properties of this material. We find that while the stoichiometric structure has poor ionic conductivity, engineering of its composition to introduce interstitial lithium defects is able to exploit the low migration barrier of the bcc anion framework. Our calculations predict a solid-solution regime extending to x = 0.5 in Li[subscript 1+2x]Zn[subscript 1−x]PS[subscript 4], and yield a new ionic conductor with exceptionally high lithium-ion conductivity, potentially exceeding 50 mS cm[supercript −1] at room temperature.<br />National Science Foundation (U.S.) (ACI-1053575)

Details

Database :
OAIster
Journal :
Royal Society of Chemistry
Notes :
application/pdf, en_US
Publication Type :
Electronic Resource
Accession number :
edsoai.on1141895231
Document Type :
Electronic Resource