Since the ionization potential (IP) is one of the fundamental quantities in a solid, ruling the physical and chemical properties and electronic device performances, many researchers have quantified the IPs using first-principles calculations of slab models recently. However, the breakdown into bulk and surface contributions has remained a contentious issue. In this study, we discuss how to decompose the IP into the bulk and surface contributions by using the macroscopic average technique. Although this procedure quantifies well-defined macroscopic dipoles and corroborates with the continuous model, it is not consistent with the physical intuition. This is because the strong charge fluctuation inside solids significantly contributes to the m...
We develop a nonempirical atoms-in-molecules (AIM) method for computing net atomic charges that simu...
Calculations of the electronic states of donor and acceptor impurities in nanowires show that the io...
Analysis of accurate experimental and theoretical structure factors of diamond and silicon reveals t...
The ionization potential is the key to determine the absolute positions of valence and conduction ba...
The ionization potential(IP)is the key to determine valence and conduction band edges of a semicondu...
The ionization potential(IP) is the key to determine the positions of valence and conduction band ed...
A mathematical model is proposed for calculating the ionization potentials of molecules on the surf...
We revisit a model in which the ionization energy of a metal particle is associated with the work do...
Using an ab initio pseudopotential approach, we have studied the ionization potential of several sur...
This work finds that different charge equilibration methods lead to qualitatively different response...
This work finds that different charge equilibration methods lead to qualitatively different response...
The electronic structure of a solid is affected by size and altered from the continuous electronic l...
Applying the classical discrete reaction field (DRF) approach, which includes a treatment for the so...
Applying the classical discrete reaction field (DRF) approach, which includes a treatment for the so...
Bulk and surface electronic band structure properties of alkali halides are investigated by using de...
We develop a nonempirical atoms-in-molecules (AIM) method for computing net atomic charges that simu...
Calculations of the electronic states of donor and acceptor impurities in nanowires show that the io...
Analysis of accurate experimental and theoretical structure factors of diamond and silicon reveals t...
The ionization potential is the key to determine the absolute positions of valence and conduction ba...
The ionization potential(IP)is the key to determine valence and conduction band edges of a semicondu...
The ionization potential(IP) is the key to determine the positions of valence and conduction band ed...
A mathematical model is proposed for calculating the ionization potentials of molecules on the surf...
We revisit a model in which the ionization energy of a metal particle is associated with the work do...
Using an ab initio pseudopotential approach, we have studied the ionization potential of several sur...
This work finds that different charge equilibration methods lead to qualitatively different response...
This work finds that different charge equilibration methods lead to qualitatively different response...
The electronic structure of a solid is affected by size and altered from the continuous electronic l...
Applying the classical discrete reaction field (DRF) approach, which includes a treatment for the so...
Applying the classical discrete reaction field (DRF) approach, which includes a treatment for the so...
Bulk and surface electronic band structure properties of alkali halides are investigated by using de...
We develop a nonempirical atoms-in-molecules (AIM) method for computing net atomic charges that simu...
Calculations of the electronic states of donor and acceptor impurities in nanowires show that the io...
Analysis of accurate experimental and theoretical structure factors of diamond and silicon reveals t...