Encapsulation of lithium in the confined spaces within individual nanocapsules is intriguing and highly desirable for developing high-performance Li metal anodes. This work aims for a mechanistic understanding of Li encapsulation and its confined growth kinetics inside 1D enclosed spaces. To achieve this, amorphous carbon nanotubes are employed as a model host using in situ transmission electron microscopy. The carbon shells have dual roles, providing geometric/mechanical constraints and electron/ion transport channels, which profoundly alter the Li growth patterns. Li growth/dissolution takes place via atom addition/removal at the free surfaces through Li+ diffusion along the shells in the electric field direction, resulting in the formati...
The increasing demand for safe and dense energy storage has shifted research focus from liquid elect...
Selective deposition of lithium into a carbonaceous host is considered an effective strategy to prev...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...
Abstract(#br)Metallic lithium promises the ultimate anode material for building next-generation Li b...
The end-cap removal of carbon nanotubes (CNTs) refers to the structural modification method that mak...
Lithium (Li) metal has garnered considerable attention in next-generation battery anodes. However, i...
[eng] Theoretical investigations on single-walled carbon nanotubes (SWCNT) have been carried out usi...
Carbon nanotube (CNT)-encapsulated metal sulfides/oxides are promising candidates for application as...
Silicon has the highest theoretical lithium storage capacity of all materials at 4200 mAh/g; therefo...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Three-dimensional (3D) host architectures have emerged as promising strategies for resolving the cri...
Metallic lithium anodes hold the key for next-generation high-energy batteries. However, the safety ...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
© 2021 American Chemical Society.The increasing demand for safe and dense energy storage has shifted...
The increasing demand for safe and dense energy storage has shifted research focus from liquid elect...
Selective deposition of lithium into a carbonaceous host is considered an effective strategy to prev...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...
Abstract(#br)Metallic lithium promises the ultimate anode material for building next-generation Li b...
The end-cap removal of carbon nanotubes (CNTs) refers to the structural modification method that mak...
Lithium (Li) metal has garnered considerable attention in next-generation battery anodes. However, i...
[eng] Theoretical investigations on single-walled carbon nanotubes (SWCNT) have been carried out usi...
Carbon nanotube (CNT)-encapsulated metal sulfides/oxides are promising candidates for application as...
Silicon has the highest theoretical lithium storage capacity of all materials at 4200 mAh/g; therefo...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Suppressing Li dendrite growth has gained research interest due to the high theoretical capacity of ...
Three-dimensional (3D) host architectures have emerged as promising strategies for resolving the cri...
Metallic lithium anodes hold the key for next-generation high-energy batteries. However, the safety ...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
© 2021 American Chemical Society.The increasing demand for safe and dense energy storage has shifted...
The increasing demand for safe and dense energy storage has shifted research focus from liquid elect...
Selective deposition of lithium into a carbonaceous host is considered an effective strategy to prev...
The application of lithium (Li) metal anodes in rechargeable batteries is primarily restricted by Li...