International audienceLiNi0.5Mn1.5O4 (LNMO) is a promising 5V-class electrode for Li-ion batteries but suffers from manganese dissolution and electrolyte decomposition owing to the high working potential. An attractive solution to stabilize the surface chemistry consists in mastering the interface between the LNMO electrode and the liquid electrolyte with a surface protective layer made from the powerful surface deposition method. Here, we show that a 7400 nm thick sputtered LNMO film coated with a nanometer-thick lithium-ion-conductive Li3PO4 layer was deposited by the atomic layer deposition method. We demonstrate that this “material model system” can deliver a remarkable surface capacity (∼0.4 mAh cm–2 at 1C) and exhibits improved cyclin...
The accumulation of irreversible capacity in the first cycle and upon cycling has been studied for L...
It has been demonstrated that atomic layer deposition (ALD) provides an initially safeguarding, unif...
Recent work has identified enhanced charge-storage capacity in the spinel lithium manganese oxide (L...
International audienceLiNi0.5Mn1.5O4 (LNMO) is a promising 5V-class electrode for Li-ion batteries b...
The effects of depositing ultrathin (<1 nm) Al2O3 coatings on LiNi0.5Mn1.5O4 (LNMO) particles usi...
Application of a functional surface coating on Li-ion battery electrodes can potentially result in a...
In order to meet the ever increasing energy needs of society and realize the US Department of Energy...
Lithium manganese oxide spinels are promising candidate materials for thin-film lithium-ion batterie...
Atomic layer deposition (ALD) has evolved as an important technique to coat conformal protective thi...
One of the greatest challenges of modern society is to stabilize a consistent energy supply that wil...
Li-rich layered oxides (LLOs) can deliver almost double the capacity of conventional electrode mater...
Improving the performance of existing cathode materials of lithium-ion batteries (LIBs) through surf...
when used as a cathode material in rechargeable Li-ion batteries. To enhance the cycling stability o...
Transition metal dissolution in cathode active material for Li-based batteries is a critical aspect ...
Layered transition-metal oxides (Li[NixMnyCoz]O-2, NMC, or NMCxyz) due to their poor stability when ...
The accumulation of irreversible capacity in the first cycle and upon cycling has been studied for L...
It has been demonstrated that atomic layer deposition (ALD) provides an initially safeguarding, unif...
Recent work has identified enhanced charge-storage capacity in the spinel lithium manganese oxide (L...
International audienceLiNi0.5Mn1.5O4 (LNMO) is a promising 5V-class electrode for Li-ion batteries b...
The effects of depositing ultrathin (<1 nm) Al2O3 coatings on LiNi0.5Mn1.5O4 (LNMO) particles usi...
Application of a functional surface coating on Li-ion battery electrodes can potentially result in a...
In order to meet the ever increasing energy needs of society and realize the US Department of Energy...
Lithium manganese oxide spinels are promising candidate materials for thin-film lithium-ion batterie...
Atomic layer deposition (ALD) has evolved as an important technique to coat conformal protective thi...
One of the greatest challenges of modern society is to stabilize a consistent energy supply that wil...
Li-rich layered oxides (LLOs) can deliver almost double the capacity of conventional electrode mater...
Improving the performance of existing cathode materials of lithium-ion batteries (LIBs) through surf...
when used as a cathode material in rechargeable Li-ion batteries. To enhance the cycling stability o...
Transition metal dissolution in cathode active material for Li-based batteries is a critical aspect ...
Layered transition-metal oxides (Li[NixMnyCoz]O-2, NMC, or NMCxyz) due to their poor stability when ...
The accumulation of irreversible capacity in the first cycle and upon cycling has been studied for L...
It has been demonstrated that atomic layer deposition (ALD) provides an initially safeguarding, unif...
Recent work has identified enhanced charge-storage capacity in the spinel lithium manganese oxide (L...