Correlations in the Electronic Structure of van der Waals NiPS3 Crystals: An X-ray Absorption and Resonant Photoelectron Spectroscopy Study.
Mouhui YanYichen JinZhicheng WuArshak A TsaturyanAnna A MakarovaDmitry SmirnovElena VoloshinaYuriy S DedkovPublished in: The journal of physical chemistry letters (2021)
The electronic structure of high-quality van der Waals NiPS3 crystals was studied using near-edge X-ray absorption spectroscopy (NEXAFS) and resonant photoelectron spectroscopy (ResPES) in combination with density functional theory (DFT) approach. The experimental spectroscopic methods, being element specific, allow one to discriminate between atomic contributions in the valence and conduction band density of states and give direct comparison with the results of DFT calculations. Analysis of the NEXAFS and ResPES data allows one to identify the NiPS3 material as a charge-transfer insulator. Obtained spectroscopic and theoretical data are very important for the consideration of possible correlated-electron phenomena in such transition-metal layered materials, where the interplay between different degrees of freedom for electrons defines their electronic properties, allowing one to understand their optical and transport properties and to propose further possible applications in electronics, spintronics, and catalysis.
Keyphrases
- density functional theory
- high resolution
- transition metal
- molecular dynamics
- molecular docking
- single molecule
- solid state
- electronic health record
- electron microscopy
- mass spectrometry
- big data
- room temperature
- dual energy
- high speed
- molecular dynamics simulations
- energy transfer
- magnetic resonance imaging
- magnetic resonance
- computed tomography
- deep learning