SnO2 is widely used as a transparent conductor and sensor material. Better understanding and control of its conductivity would enhance its performance in existing applications and enable new ones, such as in light emitters. Using density functional theory, we show that the conventional attribution of n-type conductivity to intrinsic point defects is incorrect. Unintentional incorporation of hydrogen provides a consistent explanation of experimental observations. Most importantly, we find that SnO2 offers excellent prospects for p-type doping by incorporation of acceptors on the Sn site. Specific strategies for optimizing acceptor incorporation are presented
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...
SnO<sub>2</sub> is widely used as a transparent conductor and sensor material. Better understanding ...
Transparent conducting oxides (TCOs) are ubiquitous in modern consumer electronics. SnO2 is an earth...
Tin dioxide (SnO2), due to its non-toxicity, high stability and electron transport capability repres...
A pseudopotential plane-wave based density functional theory simulations of the hydrogen adsorption ...
The role of the divalent nature of tin is explored in tin monoxide, revealing a novel path for enhan...
The role of the divalent nature of tin is explored in tin monoxide, revealing a novel path for enhan...
Transparent conducting oxides (TCOs) are ubiquitous in modern consumer electronics. SnO2 is an earth...
Transparent conducting oxides (TCOs) are ubiquitous in modern consumer electronics. SnO2 is an earth...
Tin dioxide is a wide band-gap semiconductor and is part of a class of promising transparent conduct...
The source of n -type conductivity in undoped transparent conducting oxides has been a topic of deba...
A model for conductance in n-type non-degenerate semiconductors is proposed and applied to polycryst...
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 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...
SnO<sub>2</sub> is widely used as a transparent conductor and sensor material. Better understanding ...
Transparent conducting oxides (TCOs) are ubiquitous in modern consumer electronics. SnO2 is an earth...
Tin dioxide (SnO2), due to its non-toxicity, high stability and electron transport capability repres...
A pseudopotential plane-wave based density functional theory simulations of the hydrogen adsorption ...
The role of the divalent nature of tin is explored in tin monoxide, revealing a novel path for enhan...
The role of the divalent nature of tin is explored in tin monoxide, revealing a novel path for enhan...
Transparent conducting oxides (TCOs) are ubiquitous in modern consumer electronics. SnO2 is an earth...
Transparent conducting oxides (TCOs) are ubiquitous in modern consumer electronics. SnO2 is an earth...
Tin dioxide is a wide band-gap semiconductor and is part of a class of promising transparent conduct...
The source of n -type conductivity in undoped transparent conducting oxides has been a topic of deba...
A model for conductance in n-type non-degenerate semiconductors is proposed and applied to polycryst...
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 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...