International audienceThe surface reactivity of Ni-rich layered transition metal oxides is instrumental to the performance of batteries based on these positive electrode materials. Most often, strong surface modifications are detailed with respect to a supposed ideal initial state. Here, we study the LiNi0.8Mn0.1Co0.1O2 (NMC811) cathode material in its pristine state, hence before any contact with electrolyte or cycling, thanks to advanced microscopy and spectroscopy techniques to fully characterize its surface down to the nanometer scale. Scanning transmission electron microscopy- electron energy loss spectroscopy (STEM-EELS), solid-state nuclear magnetic resonance (SS-NMR), and X-ray photoelectron spectroscopy (XPS) are combined and corre...
Layered lithium transition metal oxides, in particular, NMCs (LiNixCoyMnzO2) represent a family of p...
The mixed transition-metal layered compound, LiNi0.5Mn0.3Co0.2O2 (NMC532), is a promising high-energ...
The nickel-rich cathode material Li[Ni0.8Mn0.1Co0.1]O2 is a much sought after material in Li-ion bat...
The surface reactivity of Ni-rich layered transition metal oxides is instrumental to the performance...
Layered LiNi[subscript 0.8]Mn[subscript 0.1]Co[subscript 0.1]O[subscript 2](NMC811) is one of the hi...
Nickel-rich layered cathode materials have the potential to enable cheaper and higher energy lithium...
Surface properties of cathode particles play important roles in the transport of ions and electrons ...
© 2020 American Chemical Society. Layered lithium nickel, manganese, and cobalt oxides (NMC) are amo...
Surface lattice reconstruction is commonly observed in nickel-rich layered oxide battery cathode mat...
Nickel-rich layered materials are emerging as cathodes of choice for next-generation high energy den...
Nickel-rich layered materials are emerging as cathodes of choice for next-generation high energy den...
Ni-rich LiNi1–x–yMnxCoyO2 (NMC) cathode materials are being aggressively developed for high-voltage ...
Understanding how structural and chemical transformations take place in particles under thermal cond...
Understanding how structural and chemical transformations take place in particles under thermal cond...
Layered lithium transition metal oxides, in particular, NMCs (LiNixCoyMnzO2) represent a family of p...
Layered lithium transition metal oxides, in particular, NMCs (LiNixCoyMnzO2) represent a family of p...
The mixed transition-metal layered compound, LiNi0.5Mn0.3Co0.2O2 (NMC532), is a promising high-energ...
The nickel-rich cathode material Li[Ni0.8Mn0.1Co0.1]O2 is a much sought after material in Li-ion bat...
The surface reactivity of Ni-rich layered transition metal oxides is instrumental to the performance...
Layered LiNi[subscript 0.8]Mn[subscript 0.1]Co[subscript 0.1]O[subscript 2](NMC811) is one of the hi...
Nickel-rich layered cathode materials have the potential to enable cheaper and higher energy lithium...
Surface properties of cathode particles play important roles in the transport of ions and electrons ...
© 2020 American Chemical Society. Layered lithium nickel, manganese, and cobalt oxides (NMC) are amo...
Surface lattice reconstruction is commonly observed in nickel-rich layered oxide battery cathode mat...
Nickel-rich layered materials are emerging as cathodes of choice for next-generation high energy den...
Nickel-rich layered materials are emerging as cathodes of choice for next-generation high energy den...
Ni-rich LiNi1–x–yMnxCoyO2 (NMC) cathode materials are being aggressively developed for high-voltage ...
Understanding how structural and chemical transformations take place in particles under thermal cond...
Understanding how structural and chemical transformations take place in particles under thermal cond...
Layered lithium transition metal oxides, in particular, NMCs (LiNixCoyMnzO2) represent a family of p...
Layered lithium transition metal oxides, in particular, NMCs (LiNixCoyMnzO2) represent a family of p...
The mixed transition-metal layered compound, LiNi0.5Mn0.3Co0.2O2 (NMC532), is a promising high-energ...
The nickel-rich cathode material Li[Ni0.8Mn0.1Co0.1]O2 is a much sought after material in Li-ion bat...