Alloyed zinc sulfide (ZnS) has shown promise as a relatively inexpensive and earth-abundant transparent conducting material (TCM). Though Cu-doped ZnS has been identified as a high-performing p-type TCM, the corresponding n-doped ZnS has, to date, been challenging to synthesize in a controlled manner; this is because the dopant atoms compete with hole-inducing zinc vacancies near the conduction band minimum as the most thermodynamically stable intrinsic point defects. We thus aim to identify the most promising n-type ZnS-based TCM, with the optimal combination of physical stability, transparency, and electrical conductivity. Using a relatively new method for calculating the free energy of both the sphalerite (cubic) and wurtzite (hexagonal)...
Even though the ZnSb compound has been known for decades and used in the earliest thermoelectric dev...
First-principles calculations show that ZnSnN2 has a very small formation enthalpy, and the donor de...
Wide band gap semiconductor materials are extending significant applications in electronics and opto...
Alloyed zinc sulfide (ZnS) has shown promise as a relatively inexpensive and earth-abundant transpar...
Zinc sulfide is an excellent candidate for the development of a p-type transparent conducting materi...
We revise the electronic and optical properties of ZnS on the basis of first principles simulations,...
All transparent conducting materials (TCMs) of technological practicality are n-type; the inferior c...
Transparent conducting oxides have become ubiquitous in modern optoelectronics. However, the number ...
The variation of the electrical conductivity of copper (Cu) doped zinc sulphide (ZnS) alloy with te...
We have presented density functional theory calculations of electronic and optical properties of ZnS...
In this work, high-throughput ab initio calculations are employed to identify the most promising cha...
By the help of density functional theory for a Cu doped ZnS compound the charge density, Fermi surf...
By employing first-principle total-energy calculations, a systematic study of the dopability of ZnS ...
Element doping is a universal way to improve the electronic and optical properties of two-dimensiona...
AbstractWe present the results from ab initio, self-consistent, local density approximation (LDA) ca...
Even though the ZnSb compound has been known for decades and used in the earliest thermoelectric dev...
First-principles calculations show that ZnSnN2 has a very small formation enthalpy, and the donor de...
Wide band gap semiconductor materials are extending significant applications in electronics and opto...
Alloyed zinc sulfide (ZnS) has shown promise as a relatively inexpensive and earth-abundant transpar...
Zinc sulfide is an excellent candidate for the development of a p-type transparent conducting materi...
We revise the electronic and optical properties of ZnS on the basis of first principles simulations,...
All transparent conducting materials (TCMs) of technological practicality are n-type; the inferior c...
Transparent conducting oxides have become ubiquitous in modern optoelectronics. However, the number ...
The variation of the electrical conductivity of copper (Cu) doped zinc sulphide (ZnS) alloy with te...
We have presented density functional theory calculations of electronic and optical properties of ZnS...
In this work, high-throughput ab initio calculations are employed to identify the most promising cha...
By the help of density functional theory for a Cu doped ZnS compound the charge density, Fermi surf...
By employing first-principle total-energy calculations, a systematic study of the dopability of ZnS ...
Element doping is a universal way to improve the electronic and optical properties of two-dimensiona...
AbstractWe present the results from ab initio, self-consistent, local density approximation (LDA) ca...
Even though the ZnSb compound has been known for decades and used in the earliest thermoelectric dev...
First-principles calculations show that ZnSnN2 has a very small formation enthalpy, and the donor de...
Wide band gap semiconductor materials are extending significant applications in electronics and opto...