The scientific community is continuously committed to the search for new high energy electrochemical storage devices. In this regard, lithium metal batteries, due to their very high electrochemical energy storage capacity, appear to be a highly appealing choice. Unfortunately, the use of lithium metal as the anode may lead to some safety hazards due to its uneven deposition upon charging, resulting in dendrite growth and eventual shorting of the battery. This issue may be successfully addressed by using intrinsically safer electrolytes capable of establishing a physical barrier at the electrode interface. The most promising candidates are solid electrolytes, either polymeric or inorganic. The main purpose of this review is to describe the p...
With the lithium-ion technology approaching its intrinsic limit with graphite-based anodes, Li metal...
This project aims to help facilitate the step change in battery energy density (per volume) needed f...
Current lithium-ion batteries face severe safety challenges including thermal-runaway, flaming, and ...
© 2021 Wiley-VCH GmbHRemarkable improvement of the ionic conductivity of inorganic solid electrolyte...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Despite the efforts devoted to the identification of new electrode materials with higher specific ca...
Lithium metal batteries (LMBs) are in the spotlight as a next-generation battery due to their high t...
© The Royal Society of Chemistry 2020. The inherent limitations of current lithium-ion batteries for...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
International audienceMost of the current commercialized lithium batteries employ liquid electrolyte...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
Introduction Nowadays, electrical energy storage is one of the most critical issue to answer global...
With the lithium-ion technology approaching its intrinsic limit with graphite-based anodes, Li metal...
Lithium metal has a low redox potential (-3.04 V vs standard hydrogen electrode) and high specific c...
With the lithium-ion technology approaching its intrinsic limit with graphite-based anodes, Li metal...
This project aims to help facilitate the step change in battery energy density (per volume) needed f...
Current lithium-ion batteries face severe safety challenges including thermal-runaway, flaming, and ...
© 2021 Wiley-VCH GmbHRemarkable improvement of the ionic conductivity of inorganic solid electrolyte...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Despite the efforts devoted to the identification of new electrode materials with higher specific ca...
Lithium metal batteries (LMBs) are in the spotlight as a next-generation battery due to their high t...
© The Royal Society of Chemistry 2020. The inherent limitations of current lithium-ion batteries for...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
International audienceMost of the current commercialized lithium batteries employ liquid electrolyte...
Portable energy storage is of critical importance for the advance of renewable energy storage, consu...
Introduction Nowadays, electrical energy storage is one of the most critical issue to answer global...
With the lithium-ion technology approaching its intrinsic limit with graphite-based anodes, Li metal...
Lithium metal has a low redox potential (-3.04 V vs standard hydrogen electrode) and high specific c...
With the lithium-ion technology approaching its intrinsic limit with graphite-based anodes, Li metal...
This project aims to help facilitate the step change in battery energy density (per volume) needed f...
Current lithium-ion batteries face severe safety challenges including thermal-runaway, flaming, and ...