A range of computational modelling techniques are employed to explore the structures, defect and electronic properties of three transparent conducting oxides (TCOs): SnO₂, In₂O₃ and ZnO. Bulk interatomic potential (IP) based calculations are carried out to model point defects in SnO₂ and In₂O₃. We report new IPs for the two binary oxides, which offer an improvement over the previously available models, and give defect formation energies comparable with those obtained using density functional theory (DFT). The intrinsic point defects in ZnO are investigated in detail using a hybrid quantum mechanical/molecular mechanical (QM/MM) embedded cluster approach. The formation energies show the oxygen vacancy to be the most favourable under O-...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
Transparent conductive oxides (TCOs) such as doped In₂O₃, ZnO, SnO₂ or CdO are highly attractive due...
A variety of industrial applications such as solar cells, touch screen displays and LED require mate...
The source of n-type conductivity in undoped transparent conducting oxides has been a topic of debat...
The source of n-type conductivity in undoped transparent conducting oxides has been a topic of debat...
The source of n-type conductivity in undoped transparent conducting oxides has been a topic of debat...
The source of n -type conductivity in undoped transparent conducting oxides has been a topic of deba...
The source of n -type conductivity in undoped transparent conducting oxides has been a topic of deba...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
Transparent conductive oxides (TCOs) such as doped In₂O₃, ZnO, SnO₂ or CdO are highly attractive due...
A variety of industrial applications such as solar cells, touch screen displays and LED require mate...
The source of n-type conductivity in undoped transparent conducting oxides has been a topic of debat...
The source of n-type conductivity in undoped transparent conducting oxides has been a topic of debat...
The source of n-type conductivity in undoped transparent conducting oxides has been a topic of debat...
The source of n -type conductivity in undoped transparent conducting oxides has been a topic of deba...
The source of n -type conductivity in undoped transparent conducting oxides has been a topic of deba...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a consistent interatomic force field for indium sesquioxide (In2O3) and tin dioxide (SnO2...
We present a comparative study of oxygen vacancies in In2O3, SnO2, and ZnO based on the hybrid-funct...
Transparent conductive oxides (TCOs) such as doped In₂O₃, ZnO, SnO₂ or CdO are highly attractive due...