Development of sodium anodes, both hard carbon (HC) and metallic, is dependent on the discovery of electrolyte formations and additives able to stabilize the interphase and support Na+ transport. Halogen salt additives are known to lower the energy barrier for the Na-ion charge transfer at the interface and facilitate stable Na plating/stripping in a symmetric cell configuration. Here, a halogen-rich additive for the sodium-ion battery electrolyte, 2-chloro-1,1,2-trifluoroethyl difluoromethyl ether (enflurane), is reported. Enflurane offers a simple molecular alternative to salt-based additives. The additive is also shown to improve the cycling performance of sodium metal electrodes. Our analysis demonstrates that enflurane is preferentiall...
Recent discovery of high-concentration electrolyte systems has opened a new avenue toward the high-v...
© The Royal Society of Chemistry 2018. Stabilizing the reactive metal anode is a critical challenge ...
Na-ion batteries have regained attention because they offer sustainability advantages over the Li-io...
Development of sodium anodes, both hard carbon (HC) and metallic, is dependent on the discovery of e...
The composition, morphology and evolution of the solid electrolyte interphase (SEI) formed on hard c...
Sodium metal anodes have attracted great attention for the development of a next generation of high-...
Owing to the low cost and high abundance of sodium, sodium-based batteries, especially those employi...
Widely used conductive carbon is found to be a major capacity contributor towards the sodium storage...
Owing to the low cost and high abundance of sodium, sodium‐based batteries, especially those employi...
The successful commercialization of sodium-ion batteries is heavily contingent on the development of...
For sodium (Na)‐rechargeable batteries to compete, and go beyond the currently prevailing Li‐ion tec...
For sodium (Na)-rechargeable batteries to compete, and go beyond the currently prevailing Li-ion tec...
Sodium ion batteries have been developed using ionic liquids as electrolytes. Sodium is superior to ...
International audienceWe report a systematic investigation of Na-based electrolytesthat comprise var...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...
Recent discovery of high-concentration electrolyte systems has opened a new avenue toward the high-v...
© The Royal Society of Chemistry 2018. Stabilizing the reactive metal anode is a critical challenge ...
Na-ion batteries have regained attention because they offer sustainability advantages over the Li-io...
Development of sodium anodes, both hard carbon (HC) and metallic, is dependent on the discovery of e...
The composition, morphology and evolution of the solid electrolyte interphase (SEI) formed on hard c...
Sodium metal anodes have attracted great attention for the development of a next generation of high-...
Owing to the low cost and high abundance of sodium, sodium-based batteries, especially those employi...
Widely used conductive carbon is found to be a major capacity contributor towards the sodium storage...
Owing to the low cost and high abundance of sodium, sodium‐based batteries, especially those employi...
The successful commercialization of sodium-ion batteries is heavily contingent on the development of...
For sodium (Na)‐rechargeable batteries to compete, and go beyond the currently prevailing Li‐ion tec...
For sodium (Na)-rechargeable batteries to compete, and go beyond the currently prevailing Li-ion tec...
Sodium ion batteries have been developed using ionic liquids as electrolytes. Sodium is superior to ...
International audienceWe report a systematic investigation of Na-based electrolytesthat comprise var...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...
Recent discovery of high-concentration electrolyte systems has opened a new avenue toward the high-v...
© The Royal Society of Chemistry 2018. Stabilizing the reactive metal anode is a critical challenge ...
Na-ion batteries have regained attention because they offer sustainability advantages over the Li-io...