Lithium metal batteries have recently gained tremendous attention owing to their high energy capacity compared to other rechargeable batteries. Nevertheless, lithium (Li) dendritic growth causes low Coulombic efficiency, thermal runaway, and safety issues, all of which hinder the practical application of Li metal as an anodic material. In this review, the failure mechanisms of Li metal anode are described according to its infinite volume changes, unstable solid electrolyte interphase, and Li dendritic growth. The fundamental models that describe the Li deposition and dendritic growth, such as the thermodynamic, electrodeposition kinetics, and internal stress models are summarized. From these considerations, porous carbon-based frameworks ha...
Next generation rechargeable lithium metal battery chemistries have the potential to revolutionize e...
Currently, the state-of-the-art lithium-ion batteries (LIBs) are the most widely used energy storage...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Lithium (Li) metal is regarded as the most attract...
Lithium (Li) metal has attracted significant attention in areas that range from basic research to va...
© 2020 Elsevier B.V. Due to the increasing demands for energy storage devices with higher energy den...
Three-dimensional (3D) host architectures have emerged as promising strategies for resolving the cri...
The utilization of lithium (Li) metal as an anode has attracted significant attention for high-energ...
Lithium (Li) metal is a promising anode material for next-generation batteries because of its low st...
Lithium secondary batteries have been the most successful energy storage devices for nearly 30 years...
Enhancing the performance of secondary batteries is vital for the widespread adoption of renewable e...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Three-dimensional (3D) porous N-doped carbon nanoflake structures decorated with in situ formed Ag n...
Abstract Lithium (Li) metal is regarded as the ultimate anode for next‐generation Li‐ion batteries d...
Lithium (Li) metal is an ideal anode for high energy-density batteries. During Li plating and stripp...
Next generation rechargeable lithium metal battery chemistries have the potential to revolutionize e...
Currently, the state-of-the-art lithium-ion batteries (LIBs) are the most widely used energy storage...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...
© 2020 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim Lithium (Li) metal is regarded as the most attract...
Lithium (Li) metal has attracted significant attention in areas that range from basic research to va...
© 2020 Elsevier B.V. Due to the increasing demands for energy storage devices with higher energy den...
Three-dimensional (3D) host architectures have emerged as promising strategies for resolving the cri...
The utilization of lithium (Li) metal as an anode has attracted significant attention for high-energ...
Lithium (Li) metal is a promising anode material for next-generation batteries because of its low st...
Lithium secondary batteries have been the most successful energy storage devices for nearly 30 years...
Enhancing the performance of secondary batteries is vital for the widespread adoption of renewable e...
For future applications in portable electronics, electric vehicles and grid storage, batteries with ...
Three-dimensional (3D) porous N-doped carbon nanoflake structures decorated with in situ formed Ag n...
Abstract Lithium (Li) metal is regarded as the ultimate anode for next‐generation Li‐ion batteries d...
Lithium (Li) metal is an ideal anode for high energy-density batteries. During Li plating and stripp...
Next generation rechargeable lithium metal battery chemistries have the potential to revolutionize e...
Currently, the state-of-the-art lithium-ion batteries (LIBs) are the most widely used energy storage...
Uncontrolled dendrites resulting from nonuniform lithium (Li) nucleation/growth and Li volume expans...