The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li dendrite growth on the metal’s surface, which leads to shortened cycle life and safety concerns. Herein, well‐spaced nanotubes with ultrauniform surface curvature are introduced as a Li metal anode structure. The ultrauniform nanotubular surface generates uniform local electric fields that evenly attract Li‐ions to the surface, thereby inducing even current density distribution. Moreover, the well‐defined nanotube spacing offers Li diffusion pathways to the electroactive areas as well as the confined spaces to host deposited Li. These structural attributes create a unique electrodeposition manner; i.e., Li metal homogenously deposits on the ...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
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...
To unlock the great potential of lithium metal anodes for high-performance batteries, a number of cr...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Li metal anodes, which have attracted much attention for their high specific capacity and low redox ...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
The drive for significant advancement in battery capacity and energy density inspired a revisit to t...
Next-generation high-energy batteries will require a rechargeable lithium metal anode, but lithium d...
Although lithium-oxygen batteries possess a high theoretical energy density and are considered as pr...
Metallic lithium anodes hold the key for next-generation high-energy batteries. However, the safety ...
Abstract The interfacial instability of lithium (Li) metal is one of the critical challenges, which ...
Abstract(#br)Metallic lithium promises the ultimate anode material for building next-generation Li b...
The NASA Glenn Research Center is evaluating the use of carbon nanotubes as anode materials for thin...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
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...
To unlock the great potential of lithium metal anodes for high-performance batteries, a number of cr...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Li metal anodes, which have attracted much attention for their high specific capacity and low redox ...
Abstract Suppressing Li dendrite growth has gained research interest due to the high theoretical cap...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
The drive for significant advancement in battery capacity and energy density inspired a revisit to t...
Next-generation high-energy batteries will require a rechargeable lithium metal anode, but lithium d...
Although lithium-oxygen batteries possess a high theoretical energy density and are considered as pr...
Metallic lithium anodes hold the key for next-generation high-energy batteries. However, the safety ...
Abstract The interfacial instability of lithium (Li) metal is one of the critical challenges, which ...
Abstract(#br)Metallic lithium promises the ultimate anode material for building next-generation Li b...
The NASA Glenn Research Center is evaluating the use of carbon nanotubes as anode materials for thin...
Conventional graphite faces theoretical capacity limitation, and conventional cells using graphite s...
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...