Li metal anodes, which have attracted much attention for their high specific capacity and low redox potential, face a great challenge in realizing their practical application. The fatal issue of dendrite formation gives rise to internal short circuit and safety hazards and needs to be addressed. Here we propose a rational strategy of trapping Li within microcages to confine the deposition morphology and suppress dendrite growth. Microcages with a carbon nanotube core and porous silica sheath were prepared and proved to be effective for controlling the electrodeposition behavior. In addition, the insulative coating layer prevents concentrated electron flow and decreases the possibility of “hot spots” formation. Because of the Li trapper and ...
Lithium (Li) metal anodes are candidates for the next-generation high-performance lithium-ion batter...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Lithium (Li) metal has garnered considerable attention in next-generation battery anodes. However, i...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...
Lithium metal is an ideal anode material due to its high specific capacity and low redox potential. ...
Lithium dendrite formation has hindered the practical implementation of lithium metal batteries with...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Because of its ultrahigh specific capacity, lithium metal holds great promise for revolutionizing cu...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Foils that serve as Li metal anodes suffer from poor cycling and safety concerns due to dramatic vol...
Lithium (Li) dendrite alleviation via three-dimensional (3D) structured current collectors has been ...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
Foils that serve as Li metal anodes suffer from poor cycling and safety concerns due to dramatic vol...
Lithium metal based batteries represent a major challenge and opportunity in enabling a variety of d...
Lithium (Li) metal anodes are candidates for the next-generation high-performance lithium-ion batter...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Lithium (Li) metal has garnered considerable attention in next-generation battery anodes. However, i...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...
Lithium metal is an ideal anode material due to its high specific capacity and low redox potential. ...
Lithium dendrite formation has hindered the practical implementation of lithium metal batteries with...
Li metal is demonstrated as one of the most promising anode materials for high energy density batter...
Because of its ultrahigh specific capacity, lithium metal holds great promise for revolutionizing cu...
Uncontrollable dendrite growth resulting from the non-uniform lithium ion (Li+) flux and volume expa...
Foils that serve as Li metal anodes suffer from poor cycling and safety concerns due to dramatic vol...
Lithium (Li) dendrite alleviation via three-dimensional (3D) structured current collectors has been ...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
Foils that serve as Li metal anodes suffer from poor cycling and safety concerns due to dramatic vol...
Lithium metal based batteries represent a major challenge and opportunity in enabling a variety of d...
Lithium (Li) metal anodes are candidates for the next-generation high-performance lithium-ion batter...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Lithium (Li) metal has garnered considerable attention in next-generation battery anodes. However, i...