Li3N is an excellent protective coating material for lithium electrodes with very high lithium-ion conductivity and low electronic conductivity, but the formation of stable and homogeneous coatings is technically very difficult. Here, we show that protective Li3N coatings can be simply formed by the direct reaction of electrodeposited lithium electrodes with N2 gas, whereas using battery-grade lithium foil is problematic due to the presence of a native passivation layer that hampers that reaction. The protective Li3N coating is effective at preventing lithium dendrite formation, as found from unidirectional plating and plating–stripping measurements in Li–Li cells. The Li3N coating also efficiently suppresses the parasitic reactions of poly...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
Partial funding for Open Access provided by the UMD Libraries' Open Access Publishing Fund.Lithium ...
Lithium metal is the ultimate anode choice for high energy density rechargeable lithium batteries. H...
International audienceThe properties of hybrid Sn-based artificial solid electrolyte interphase (SEI...
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seri...
In this project, an experimental study of the application of Sn3N4 as a high capacity negative elect...
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seri...
The use of interfacial layers to stabilize the lithium surface is a popular research direction for i...
Lithium metal is the ultimate anode choice for high energy density rechargeable lithium batteries. H...
Lithium–metal anode degradation is one of the major challenges of lithium–sulfur (Li–S) batteries, h...
The reversibility of Li plating/stripping should be guaranteed in Li metal batteries. Seriously pola...
The construction of all-solid-state batteries is now easier after the successful synthesis of sulfur...
Lithium metal is strongly recognized as a promising anode material for next-generation high-energy-d...
Lithium–oxygen batteries have attracted great attention for advanced energy storage systems because ...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
Partial funding for Open Access provided by the UMD Libraries' Open Access Publishing Fund.Lithium ...
Lithium metal is the ultimate anode choice for high energy density rechargeable lithium batteries. H...
International audienceThe properties of hybrid Sn-based artificial solid electrolyte interphase (SEI...
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seri...
In this project, an experimental study of the application of Sn3N4 as a high capacity negative elect...
The reversibility of lithium plating/stripping should be guaranteed in lithium metal batteries. Seri...
The use of interfacial layers to stabilize the lithium surface is a popular research direction for i...
Lithium metal is the ultimate anode choice for high energy density rechargeable lithium batteries. H...
Lithium–metal anode degradation is one of the major challenges of lithium–sulfur (Li–S) batteries, h...
The reversibility of Li plating/stripping should be guaranteed in Li metal batteries. Seriously pola...
The construction of all-solid-state batteries is now easier after the successful synthesis of sulfur...
Lithium metal is strongly recognized as a promising anode material for next-generation high-energy-d...
Lithium–oxygen batteries have attracted great attention for advanced energy storage systems because ...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
Partial funding for Open Access provided by the UMD Libraries' Open Access Publishing Fund.Lithium ...