Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefore, it is important to understand the chemical composition and growth mechanism of dendrites that limit battery efficiency and cycle life. In this study, in situ scanning electron microscopy was employed to monitor the cycling behavior of all-solid Li metal batteries with LiFePO4 cathodes. Chemical analyses of the dendrites were conducted using a windowless energy dispersive spectroscopy detector, which showed that the dendrites are not metallic lithium as universally recognized. Our results revealed the carbide nature of the dendrites with a hollow morphology and hardness greater than that of pure lithium. These carbide-based dendrites were ...
Enabling ultra-high energy density rechargeable Li batteries would have widespread impact on society...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
In the search for renewable energy storage materials, lithium metal has been considered the ideal el...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Lithium metal batteries have the highest energy density of any battery technology and are, therefore...
It is crucial to suppress lithium dendrite formation in lithium metal batteries. Formation of a good...
Dendrites are metal microstructures that may form on the lithium battery's negative electrode during...
Due to a rapidly growing use of portable electronics in daily life, there has been increasing deman...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Enabling ultra-high energy density rechargeable Li batteries would have widespread impact on society...
Enabling ultra-high energy density rechargeable Li batteries would have widespread impact on society...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
In the search for renewable energy storage materials, lithium metal has been considered the ideal el...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Failure caused by dendrite growth in high-energy-density, rechargeable batteries with lithium metal ...
Lithium metal batteries have the highest energy density of any battery technology and are, therefore...
It is crucial to suppress lithium dendrite formation in lithium metal batteries. Formation of a good...
Dendrites are metal microstructures that may form on the lithium battery's negative electrode during...
Due to a rapidly growing use of portable electronics in daily life, there has been increasing deman...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Replacing the conventional graphite anode in rechargeable batteries with lithium metal results in a ...
Enabling ultra-high energy density rechargeable Li batteries would have widespread impact on society...
Enabling ultra-high energy density rechargeable Li batteries would have widespread impact on society...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
In the search for renewable energy storage materials, lithium metal has been considered the ideal el...