Cross-sections of plastic rechargeable Li-cells were observed in a quasi in situ mode by means of a scanning electron microscope. All cells were composed of a composite cathode, containing LiMn2O4 as active material, and of a hybrid polymer electrolyte consisting of a polymer matrix embedded with a solution of lithium salt. At the negative side, three kinds of anodes (Li, Cu and graphite) were successively used. The influence of the current density on the morphology of the lithium deposit was studied from these three different configurations. Scanning Electron Microscopy (SEM) evidences for (1) the accumulation of mossy lithium, and (2) the Li-dendrites growth at the interface between Li and electrolyte are given, and correlated to the poor...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
The interfaces of lithium cells were studied upon cycling within a scanning electron microscope (SEM...
\u3cp\u3eThe interfaces of lithium cells were studied upon cycling within a scanning electron micros...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
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 ...
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 ...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Lithium metal is a promising anode material for next-generation rechargeable batteries, but non-unif...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
The interfaces of lithium cells were studied upon cycling within a scanning electron microscope (SEM...
\u3cp\u3eThe interfaces of lithium cells were studied upon cycling within a scanning electron micros...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
Limited understanding of the lithium Li nucleation and growth mechanism has hampered the implement...
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 ...
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 ...
Rechargeable metallic lithium batteries are the ultimate solution to electrochemical storage due to ...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Lithium metal is a promising anode material for next-generation rechargeable batteries, but non-unif...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...
Understanding the role of interfaces is important for improving the performance of all-solid-state l...
Li metal batteries suffer from dendrite formation which causes short circuit of the battery. Therefo...