The problem of Li metal degradation, which leads to drastic side reactions, must be solved for improving the long-term cycle performance of lithium-oxygen (Li-O-2) batteries. Recently, a number of methodologies have been proposed for Li metal surface protection, but evaluation of the stability of the protective materials is insufficient. Therefore, in this study, we fabricated an NCL (Nafion-based composite layer) as a mechanically and chemically stable protective layer for Li metal in Li-O-2 batteries. In addition, comparative experiments were conducted to investigate the mechanical and chemical stability of protective layers. Li-O-2 batteries using NCL-coated Li metal exhibited reversible oxygen reduction and evolution without any side re...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
The formation of solid electrolyte interphase at the first cycle has raised technical issues of capa...
The success of beyond lithium-ion battery (LIB) technologies, i.e., Li oxygen and Li–S cells, depend...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
The demand for batteries with higher energy densities for energy storage and electric vehicles motiv...
Lithium-oxygen (Li-O<sub>2</sub>) batteries are desirable for electric vehicles because of their hig...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
Next generation, high-capacity secondary batteries such as advanced Li-ion, Li-S, and alkali anode b...
The rising demand for energy storage is spurring the need for batteries with high energy density. Me...
Lithium–oxygen batteries have attracted great attention for advanced energy storage systems because ...
Despite the unparalleled theoretical gravimetric energy, Li-O-2 batteries are still under a research...
Advances in understanding of the basic science and engineering principles the underpin performance o...
Y.S-H., N.O.-V. and D.G.K. acknowledge the Robert Bosch Company for a Bosch Energy Research Network ...
Maintaining a stable interface of lithium metal anodes (LMAs) by implementing a protective layer is ...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
The formation of solid electrolyte interphase at the first cycle has raised technical issues of capa...
The success of beyond lithium-ion battery (LIB) technologies, i.e., Li oxygen and Li–S cells, depend...
Realization of an outermost layer on the surface of metallic lithium is performed via reactive expos...
The demand for batteries with higher energy densities for energy storage and electric vehicles motiv...
Lithium-oxygen (Li-O<sub>2</sub>) batteries are desirable for electric vehicles because of their hig...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
Rechargeable lithium metal batteries have been regarded as one of the most attractive high-energy-de...
Next generation, high-capacity secondary batteries such as advanced Li-ion, Li-S, and alkali anode b...
The rising demand for energy storage is spurring the need for batteries with high energy density. Me...
Lithium–oxygen batteries have attracted great attention for advanced energy storage systems because ...
Despite the unparalleled theoretical gravimetric energy, Li-O-2 batteries are still under a research...
Advances in understanding of the basic science and engineering principles the underpin performance o...
Y.S-H., N.O.-V. and D.G.K. acknowledge the Robert Bosch Company for a Bosch Energy Research Network ...
Maintaining a stable interface of lithium metal anodes (LMAs) by implementing a protective layer is ...
Copyright © 2018 American Chemical Society. Lithium metal is strongly recognized as a promising anod...
The formation of solid electrolyte interphase at the first cycle has raised technical issues of capa...
The success of beyond lithium-ion battery (LIB) technologies, i.e., Li oxygen and Li–S cells, depend...