Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8917476 | Current Opinion in Electrochemistry | 2018 | 14 Pages |
Abstract
The promise of high-energy density and the predicted role of the Li-S batteries in electrochemical energy storage applications are largely based on sulfur's high theoretical specific charge. Unfortunately, to date the commercialization of Li-S battery is still hindered due to the complexity of the reaction mechanism involving a sequence of dynamically changing liquid and solid equilibria. Operando techniques have been widely employed to study these performance-limiting phase transformations; however, they often fall short in tracking and resolving simultaneously the solid and liquid phases. Here, we present a review summarizing the last efforts in the field.
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Authors
J. Conder, C. Villevieille,