The nucleation and growth behavior of lithium on a CaO/Mo(001) thin film has been investigated by means of scanning tunneling microscopy and spectroscopy. The Li follows two different growth regimes on the surface. Whereas extended 2D islands develop on top of the defect-free CaO terraces, small 3D deposits decorate a network of domain boundaries that is present in the oxide film. The 2D islands have metallic character, as deduced from a standing wave pattern observed on their surface at low-bias. In contrast, a cationic nature is proposed for the defect-bound 3D species as a result of an electron- transfer from the Li 2s valence orbital into trap states localized in the CaO line defects. Tunneling spectroscopy reveals an unoccupied gap sta...
Defects and their interactions in crystalline solids often underpin material properties and function...
The distribution of Li in the V2O5 films was determined before and after intercalation/deintercalati...
In lithium–oxygen (Li–O<sub>2</sub>) batteries, it is believed that lithium peroxide (Li<sub>2</sub>...
The nucleation and growth behavior of lithium on a CaO/Mo(001) thin film has been investigated by me...
Ordered Lisingle bondMo mixed-oxide films of different compositions have been grown on a Mo(001) sur...
The electronic structure of CaO films of 10–60 monolayer thickness grown on Mo(001) has been investi...
Recent experiments have demonstrated that tiny amounts of Mo impurities give rise to drastic changes...
The growth of Au particles on Mo(001)-supported CaO films has been investigated as a function of fil...
The discovery of Li-containing transition-metal (TM) oxides has attracted broad interest and trigger...
Layered structure and peculiar electronic properties of two-dimensional (2D) materials foster the co...
Ultra high-resolution is needed to resolve light elements in a heavy-atom matrix, such as Li+ in a t...
In this contribution, we investigate the formation and evolution of LiCoO2–LiPON interfaces upon ann...
Multiple lithium-ion transport pathways and local phase changes upon lithiation in silver hollandite...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Molybdenum disulfide (MoS2) few-layer films have gained considerable attention for their possible ap...
Defects and their interactions in crystalline solids often underpin material properties and function...
The distribution of Li in the V2O5 films was determined before and after intercalation/deintercalati...
In lithium–oxygen (Li–O<sub>2</sub>) batteries, it is believed that lithium peroxide (Li<sub>2</sub>...
The nucleation and growth behavior of lithium on a CaO/Mo(001) thin film has been investigated by me...
Ordered Lisingle bondMo mixed-oxide films of different compositions have been grown on a Mo(001) sur...
The electronic structure of CaO films of 10–60 monolayer thickness grown on Mo(001) has been investi...
Recent experiments have demonstrated that tiny amounts of Mo impurities give rise to drastic changes...
The growth of Au particles on Mo(001)-supported CaO films has been investigated as a function of fil...
The discovery of Li-containing transition-metal (TM) oxides has attracted broad interest and trigger...
Layered structure and peculiar electronic properties of two-dimensional (2D) materials foster the co...
Ultra high-resolution is needed to resolve light elements in a heavy-atom matrix, such as Li+ in a t...
In this contribution, we investigate the formation and evolution of LiCoO2–LiPON interfaces upon ann...
Multiple lithium-ion transport pathways and local phase changes upon lithiation in silver hollandite...
Research over the last decade at Oak Ridge National Laboratory has led to the development of solid-s...
Molybdenum disulfide (MoS2) few-layer films have gained considerable attention for their possible ap...
Defects and their interactions in crystalline solids often underpin material properties and function...
The distribution of Li in the V2O5 films was determined before and after intercalation/deintercalati...
In lithium–oxygen (Li–O<sub>2</sub>) batteries, it is believed that lithium peroxide (Li<sub>2</sub>...