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Advanced Materials, ISSN 0935-9648, 08/2018, Volume 30, Issue 33, pp. 1870248 - n/a
In article number 1801328 , Jiayan Luo and co‐workers fabricate a mixed ion and electron conducting scaffold for high volumetric and areal capacity, high‐rate... 
rate performance | volumetric and areal capacity | mixed conductors | Li‐metal anode | Current carriers | Lithium | Wettability | Nanofibers | Scaffolds | Anodes
Journal Article
Advanced Energy Materials, ISSN 1614-6832, 01/2018, Volume 8, Issue 2, pp. 1870008 - n/a
Lithium metal anodes potentially offer an ultrahigh energy density for Li‐ion batteries. In article number 1701482 , Nae‐Lih Wu and co‐workers report a new... 
poly(vinylidene difluoride) | high current density | lithium metal anodes | dendrite suppression | Coatings | Lithium-ion batteries | Vinylidene | Flux density | Polarity | Lithium | Electronegativity | Anodes | Dendritic structure | Substrates | Rechargeable batteries
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 11/2018, Volume 57, Issue 45, pp. 14796 - 14800
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 11/2017, Volume 56, Issue 45, pp. 14207 - 14211
Journal Article
Advanced Materials, ISSN 0935-9648, 01/2018, Volume 30, Issue 1, pp. 1870005 - n/a
Lithium has many challenges, especially its tendency to form dendrites. Under bending conditions in cylindrical or flexible cells, lithium‐dendrite growth can... 
bending tolerance | Li‐metal anodes | Li–S batteries | batteries | graphene | Li–O | Batteries | Filaments | Oxide coatings | Lithium | Plastic deformation | Electric batteries | Scaffolds | Anodes | Dendritic structure
Journal Article
Chemical Society Reviews, ISSN 0306-0012, 11/2013, Volume 42, Issue 23, pp. 911 - 934
Journal Article
Advanced Materials, ISSN 0935-9648, 06/2018, Volume 30, Issue 25, pp. 1870181 - n/a
A dual‐layered film is achieved on a Li‐metal anode by spontaneous chemical reaction between lithium plates and fluoroethylene carbonate solvents. As described... 
lithium fluoride | lithium metal anode | fluoroethylene carbonate | dendrite‐free electrode | rechargeable batteries | Carbonates | Fluorides | Batteries | Lithium compounds | Organic chemistry | Anodic protection | Lithium | Chemical reactions | Protective coatings | Anodes | Dendritic structure | Deposition
Journal Article
Advanced Functional Materials, ISSN 1616-301X, 02/2018, Volume 28, Issue 8, pp. 1870049 - n/a
In article number 1705838 , Jia‐Qi Huang and co‐workers demonstrate a soft–rigid hybrid artificial protective layer for dendrite‐free lithium metal anodes. The... 
artificial protective layers | dendrite‐free metal anodes | lithium metal protection | rechargeable batteries | solid electrolytes | Batteries | Variations | Lithium | Anodic protection | Anodes | Dendritic structure
Journal Article
Journal of Power Sources, ISSN 0378-7753, 08/2014, Volume 260, pp. 57 - 61
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 09/2017, Volume 56, Issue 39, pp. 11921 - 11926
Sodium‐ion batteries are similar in concept and function to lithium‐ion batteries, but their development and commercialization lag far behind. One obstacl