Quantifying the crystallographic phases present at a surface is an important challenge in fields such as functional materials and surface science. X-ray photoelectron spectroscopy (XPS) is routinely employed in surface characterization to identify and quantify chemical species through core line analysis. Valence band (VB) spectra contain characteristic but complex features that provide information on the electronic density of states (DoS) and thus can be understood theoretically using density functional theory (DFT). Here, we present a method of fitting experimental photoemission spectra with DFT models for quantitative analysis of heterogeneous systems, specifically mapping the anatase to rutile ratio across the surface of mixed-phase TiO2...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Electronic level alignment at the interface between an adsorbed molecular layer and a semiconducting...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...
Quantifying the crystallographic phases present at a surface is an important challenge in fields suc...
Quantifying the crystallographic phases present at a surface is an important challenge in fields suc...
A method of quantitative phase analysis using valence band X-ray photoelectron spectra is presented ...
The wealth of properties of titanium dioxide relies on its various polymorphs and on their mixtures ...
As the chemical state of titanium on the surface of TiO2 can be tuned by varying its host facet and ...
To understand, and thereby rationally optimize photoactive interfaces, it is of great importance to ...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Photovoltaic (PV) technologies could provide abundant, clean and secure energy through the conversio...
We use first-principles computations based on Ehrenfest dynamics and density functional theory to st...
We model TiO2 rutile (110) and anatase (101) surfaces and investigate the effect of adsorption of be...
Investigating quasiparticle excitations of molecules on surfaces through photoemission spectroscopy ...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Electronic level alignment at the interface between an adsorbed molecular layer and a semiconducting...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...
Quantifying the crystallographic phases present at a surface is an important challenge in fields suc...
Quantifying the crystallographic phases present at a surface is an important challenge in fields suc...
A method of quantitative phase analysis using valence band X-ray photoelectron spectra is presented ...
The wealth of properties of titanium dioxide relies on its various polymorphs and on their mixtures ...
As the chemical state of titanium on the surface of TiO2 can be tuned by varying its host facet and ...
To understand, and thereby rationally optimize photoactive interfaces, it is of great importance to ...
Point defects in metal oxides such as TiO2 are key to their applications in numerous technologies. T...
Photovoltaic (PV) technologies could provide abundant, clean and secure energy through the conversio...
We use first-principles computations based on Ehrenfest dynamics and density functional theory to st...
We model TiO2 rutile (110) and anatase (101) surfaces and investigate the effect of adsorption of be...
Investigating quasiparticle excitations of molecules on surfaces through photoemission spectroscopy ...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Atomic and electronic structures of TiO2(110) surface with possible adsorptional, substitutional and...
Electronic level alignment at the interface between an adsorbed molecular layer and a semiconducting...
In reduced TiO2, electronic transitions originating from the Ti3+- induced states in the band gap ar...