TY - JOUR
T1 - Cu-doped KCL unfolded band structure and optical properties studied by DFT calculations
AU - Castillo-Quevedo, César
AU - Cabellos, Jose Luis
AU - Aceves, Raul
AU - Núñez-González, Roberto
AU - Posada-Amarillas, Alvaro
N1 - Publisher Copyright:
© 2020, MDPI AG. All rights reserved.
PY - 2020/10/1
Y1 - 2020/10/1
N2 - The unfolded band structure and optical properties of Cu-doped KCl crystals were computed by first principles within the framework of density functional theory, implemented in the ABINIT software program, utilizing pseudopotential approximation and a plane-wave basis set. From a theoretical point of view, Cu substitution into pristine KCl crystals requires calculation by the supercell (SC) method. This procedure shrinks the Brillouin zone, resulting in a folded band structure that is diffcult to interpret. To solve this problem and gain insight into the effect of copperions (Cu+) on electronic properties, the band structure of SC KCl:Cu was unfolded to make a direct comparison with the band structure of the primitive cell (PC) of pristine KCl. To understand the effect of Cu substitution on optical absorption, we calculated the imaginary part of the dielectric function of KCl:Cu through a sum-over-states formalism and broke it down into different band contributions by partially making an iterated cumulative sum (ICS) of selected valence and conduction bands. Consequently, we identified those interband transitions that give rise to the absorption peaks due to the Cu+ ion. These transitions involve valence and conduction bands formed by the Cu-3d and Cu-4s electronic states.
AB - The unfolded band structure and optical properties of Cu-doped KCl crystals were computed by first principles within the framework of density functional theory, implemented in the ABINIT software program, utilizing pseudopotential approximation and a plane-wave basis set. From a theoretical point of view, Cu substitution into pristine KCl crystals requires calculation by the supercell (SC) method. This procedure shrinks the Brillouin zone, resulting in a folded band structure that is diffcult to interpret. To solve this problem and gain insight into the effect of copperions (Cu+) on electronic properties, the band structure of SC KCl:Cu was unfolded to make a direct comparison with the band structure of the primitive cell (PC) of pristine KCl. To understand the effect of Cu substitution on optical absorption, we calculated the imaginary part of the dielectric function of KCl:Cu through a sum-over-states formalism and broke it down into different band contributions by partially making an iterated cumulative sum (ICS) of selected valence and conduction bands. Consequently, we identified those interband transitions that give rise to the absorption peaks due to the Cu+ ion. These transitions involve valence and conduction bands formed by the Cu-3d and Cu-4s electronic states.
KW - DFT calculations
KW - KCl
KW - Optical spectrum
KW - Unfolding band structure
UR - http://www.scopus.com/inward/record.url?scp=85095705077&partnerID=8YFLogxK
U2 - 10.3390/ma13194300
DO - 10.3390/ma13194300
M3 - Artículo
C2 - 32993129
AN - SCOPUS:85095705077
VL - 13
SP - 1
EP - 23
JO - Materials
JF - Materials
SN - 1996-1944
IS - 19
M1 - 4300
ER -