Sodium metal (Na) anodes are considered the most promising anode for high-energy-density sodium batteries because of their high capacity and low electrochemical potential. However, Na metal anode undergoes uncontrolled Na dendrite growth, and unstable solid electrolyte interphase layer (SEI) formation during cycling, leading to poor coulombic efficiency, and shorter lifespan. Herein, a series of Na-ion conductive alloy-type protective interface (Na-In, Na-Bi, Na-Zn, Na-Sn) is studied as an artificial SEI layer to address the issues. The hybrid Na-ion conducting SEI components over the Na-alloy can facilitate uniform Na deposition by regulating Na-ion flux with low overpotential. Furthermore, density functional study reveals that the lower s...
Abstract Rechargeable alkali metal anodes hold the promise to significantly increase the energy dens...
The sodium metal anode exhibits great potential in next-generation high-energy-density batteries due...
Sodium (Na) metal is one of the most promising electrode materials for next-generation low-cost rech...
Sodium metal batteries (SMBs), benefiting from their low cost and high energy densities, have drawn ...
The pursuit for high-energy and intrinsically safe energy storage is significantly driving the devel...
Sodium metal has been regarded as one of excellent candidates of anode materials for the next-genera...
\u3cp\u3eHigh capacity sodium (Na) metal anodes open up new opportunities for developing next-genera...
The growing demands of human society on fossil fuels have caused serious problems of global warming ...
2020 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Sodium metal is an ideal anode material for metal re...
Development of the next-generation, high-energy-density, low-cost batteries will likely be fueled by...
Sodium metal batteries (SMBs) have huge potential for applications in large-scale energy storage sys...
© 2020 Wiley-VCH GmbH Sodium metal anodes have attracted significant attention due to their high spe...
Metallic sodium is a promising anode for sodium-based batteries, owing to its high theoretical capac...
Sodium metal anode holds great promise in pursuing high-energy and sustainable rechargeable batterie...
Metallic sodium (Na) has been regarded as a promising anode for high-energy rechargeable batteries o...
Abstract Rechargeable alkali metal anodes hold the promise to significantly increase the energy dens...
The sodium metal anode exhibits great potential in next-generation high-energy-density batteries due...
Sodium (Na) metal is one of the most promising electrode materials for next-generation low-cost rech...
Sodium metal batteries (SMBs), benefiting from their low cost and high energy densities, have drawn ...
The pursuit for high-energy and intrinsically safe energy storage is significantly driving the devel...
Sodium metal has been regarded as one of excellent candidates of anode materials for the next-genera...
\u3cp\u3eHigh capacity sodium (Na) metal anodes open up new opportunities for developing next-genera...
The growing demands of human society on fossil fuels have caused serious problems of global warming ...
2020 Wiley-VCH Verlag GmbH & Co. KGaA, Weinheim Sodium metal is an ideal anode material for metal re...
Development of the next-generation, high-energy-density, low-cost batteries will likely be fueled by...
Sodium metal batteries (SMBs) have huge potential for applications in large-scale energy storage sys...
© 2020 Wiley-VCH GmbH Sodium metal anodes have attracted significant attention due to their high spe...
Metallic sodium is a promising anode for sodium-based batteries, owing to its high theoretical capac...
Sodium metal anode holds great promise in pursuing high-energy and sustainable rechargeable batterie...
Metallic sodium (Na) has been regarded as a promising anode for high-energy rechargeable batteries o...
Abstract Rechargeable alkali metal anodes hold the promise to significantly increase the energy dens...
The sodium metal anode exhibits great potential in next-generation high-energy-density batteries due...
Sodium (Na) metal is one of the most promising electrode materials for next-generation low-cost rech...