Amorphous oxide semiconductors have attracted attention in electronic device applications because of their high electrical uniformity over large areas, high mobility, and low-temperature process. However, photonic applications of oxide semiconductors are highly limited because of their larger band gap (over 3.0 eV). Here, we propose low band gap zinc oxynitride semiconductors not only because of their high electrical performance but also their high photoresponsivity in the vis–NIR regions. The optical band gap of zinc oxynitride films, which is in the range of 0.95–1.24 eV, could be controlled easily by changing oxygen and nitrogen ratios during reactive sputtering. Band gap tuned zinc oxynitride-based phototransistors showed significantly ...
International audienceZinc tin nitride (ZnSnN2) is a promising semiconductor candidate for solar cel...
Amorphous semiconducting oxides are attractive alternatives to silicon for implementing thin-film tr...
Zinc Oxide falls under the classification of transparent conductive oxides. They typical optical tra...
Amorphous metal oxides are attractive materials for various sensor applications, because of high ele...
Zinc oxynitride (ZnON) semiconductors are suitable for high performance thin-film transistors (TFTs)...
The stability of amorphous zinc tin oxynitride thin film transistors (a-ZTON TFTs) under positive bi...
Significant improvements of the photocatalytic and optoelectronic applications demand materials that...
Renewable energy sources draw unanimous attention in 21st century as the available natural sources a...
Zinc tin nitride (ZnSnN2) is a promising semiconductor candidate for solar cell applications and opt...
The rapid development of flexible electronic devices has led to a new paradigm that is transformed i...
The link between sub-bandgap states and optoelectronic properties is investigated for amorphous zinc...
Structural, electronic, and optical properties of amorphous and transparent zinc tin oxide films dep...
Zinc Nitride has recently attracted research interest as a candidate for use in earth-abundant semic...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
The transparency of oxide semiconductors is a significant feature that enables the fabrication of fu...
International audienceZinc tin nitride (ZnSnN2) is a promising semiconductor candidate for solar cel...
Amorphous semiconducting oxides are attractive alternatives to silicon for implementing thin-film tr...
Zinc Oxide falls under the classification of transparent conductive oxides. They typical optical tra...
Amorphous metal oxides are attractive materials for various sensor applications, because of high ele...
Zinc oxynitride (ZnON) semiconductors are suitable for high performance thin-film transistors (TFTs)...
The stability of amorphous zinc tin oxynitride thin film transistors (a-ZTON TFTs) under positive bi...
Significant improvements of the photocatalytic and optoelectronic applications demand materials that...
Renewable energy sources draw unanimous attention in 21st century as the available natural sources a...
Zinc tin nitride (ZnSnN2) is a promising semiconductor candidate for solar cell applications and opt...
The rapid development of flexible electronic devices has led to a new paradigm that is transformed i...
The link between sub-bandgap states and optoelectronic properties is investigated for amorphous zinc...
Structural, electronic, and optical properties of amorphous and transparent zinc tin oxide films dep...
Zinc Nitride has recently attracted research interest as a candidate for use in earth-abundant semic...
Oral presentation given at the European Materials Research Society Spring Symposium, held in Lille (...
The transparency of oxide semiconductors is a significant feature that enables the fabrication of fu...
International audienceZinc tin nitride (ZnSnN2) is a promising semiconductor candidate for solar cel...
Amorphous semiconducting oxides are attractive alternatives to silicon for implementing thin-film tr...
Zinc Oxide falls under the classification of transparent conductive oxides. They typical optical tra...