Lithium metal is an attractive anode for the next generation of high energy density lithium-ion batteries due to its high specific capacity (3,860 mAh g<sup>–1</sup>) and lowest overall anode potential. However, the key issue is that the static solid electrolyte interphase cannot match the dynamic volume changes of the Li anode, resulting in side reactions, dendrite growth, and poor electrodeposition behavior, which prevent its practical applications. Here, we show that the “solid-liquid” hybrid behavior of a dynamically cross-linked polymer enables its use as an excellent adaptive interfacial layer for Li metal anodes. The dynamic polymer can reversibly switch between its “liquid” and “solid” properties in response to the rate of lithium g...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Integrating solid-state electrolyte (SSE) into Li-metal anodes has demonstrated great promise to unl...
Traditional Li ion batteries based on intercalation-type anodes have been approaching their theoreti...
Li metal is among the most attractive anode materials for secondary batteries, with a theoretical sp...
Li dendrite growth due to uncontrolled Li plating/stripping processes has been a challenge for the a...
To suppress dendrite formation in lithium metal batteries, high cation transference number electroly...
To suppress dendrite formation in lithium metal batteries, high cation transference number electroly...
The lithium (Li) metal anode suffers severe interfacial instability from its high reactivity toward ...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Li metal has been widely regarded as a promising a...
Lithium–sulfur (Li–S) batteries are a promising next-generation battery chemistry, but the challenge...
238 pagesThe rapid rise of electric drive vehicles has accelerated research aimed at developing ener...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Integrating solid-state electrolyte (SSE) into Li-metal anodes has demonstrated great promise to unl...
Traditional Li ion batteries based on intercalation-type anodes have been approaching their theoreti...
Li metal is among the most attractive anode materials for secondary batteries, with a theoretical sp...
Li dendrite growth due to uncontrolled Li plating/stripping processes has been a challenge for the a...
To suppress dendrite formation in lithium metal batteries, high cation transference number electroly...
To suppress dendrite formation in lithium metal batteries, high cation transference number electroly...
The lithium (Li) metal anode suffers severe interfacial instability from its high reactivity toward ...
Lithium metals have been considered as the most promising anode materials for next-generation rechar...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Li metal has been widely regarded as a promising a...
Lithium–sulfur (Li–S) batteries are a promising next-generation battery chemistry, but the challenge...
238 pagesThe rapid rise of electric drive vehicles has accelerated research aimed at developing ener...
Lithium metal has the highest theoretical specific energy density (3860 mAh.g(-1)) and the most nega...
The next generation of rechargeable batteries must have significantly improved gravimetric and volum...
Utilization of lithium (Li) metal anode is highly desirable for achieving high energy density batter...
Lithium battery with high energy density and enhanced safety is undoubtedly the ideal choice for con...
Integrating solid-state electrolyte (SSE) into Li-metal anodes has demonstrated great promise to unl...
Traditional Li ion batteries based on intercalation-type anodes have been approaching their theoreti...