We investigated the effect of embedded Au nanoparticles (Au NPs) on electrical properties of zinc oxide (ZnO) for highly conductive oxide semiconductor. Au NPs in ZnO films influenced both the structural and electrical properties of the mixture films. The electrical resistivity decreases by as much as five orders of magnitude. This is explained by the electron emission from Au NPs to the ZnO matrix. Temperature-dependent Hall effect measurements show that an electron emission mechanism changes from tunneling to thermionic emission at T = 180 K. The electron mobility in the mixture film is mainly limited by the grain boundaries at lower temperature (80-180 K), and the Au/ZnO heterogeneous interface at higher temperature (180-340 K). In addit...
A sequential hydrothermal process was used to synthesize ZnO nanostructures on Si substrates. The sy...
In this work, the structural, electrical, and optical properties as well as chemical bonding state o...
Zinc oxide is a versatile semiconductor with an expansive range of applications including lighting, ...
We investigated the effect of embedded Au nanoparticles (Au NPs) on electrical properties of zinc ox...
The ability to enhance the carrier concentration without compromising the electron mobility is desir...
Simple Al/ZnO(NP)/Au diodes produced by spin coating of ZnO nanoparticle dispersions (ZnO(NP)) on Al...
Surface decoration by means of metal nanostructures is an effective way to locally modify the electr...
International audienceRecently, there has been substantial interest in the study on the electronic p...
Composite materials can exhibit properties that none of the individual components show. Moreover, co...
[[abstract]]Electronic structures and magnetic behaviours of zinc oxide nanorods (ZnO-NRs) decorated...
The sequential hydrothermal process is used to synthesize ZnO nanostructures on Si substrates. The s...
Zinc oxide (ZnO) nanomaterials are promising components for chemical and biological sensors and phot...
We demonstrate conductivity switching from a metal to semiconductor using plasmonic excitation and c...
In this work, we employ vacuum deposited Au nanoparticles (-4 nm) to control the defect density on t...
In this work, we employ vacuum deposited Au nanoparticles (-4 nm) to control the defect density on t...
A sequential hydrothermal process was used to synthesize ZnO nanostructures on Si substrates. The sy...
In this work, the structural, electrical, and optical properties as well as chemical bonding state o...
Zinc oxide is a versatile semiconductor with an expansive range of applications including lighting, ...
We investigated the effect of embedded Au nanoparticles (Au NPs) on electrical properties of zinc ox...
The ability to enhance the carrier concentration without compromising the electron mobility is desir...
Simple Al/ZnO(NP)/Au diodes produced by spin coating of ZnO nanoparticle dispersions (ZnO(NP)) on Al...
Surface decoration by means of metal nanostructures is an effective way to locally modify the electr...
International audienceRecently, there has been substantial interest in the study on the electronic p...
Composite materials can exhibit properties that none of the individual components show. Moreover, co...
[[abstract]]Electronic structures and magnetic behaviours of zinc oxide nanorods (ZnO-NRs) decorated...
The sequential hydrothermal process is used to synthesize ZnO nanostructures on Si substrates. The s...
Zinc oxide (ZnO) nanomaterials are promising components for chemical and biological sensors and phot...
We demonstrate conductivity switching from a metal to semiconductor using plasmonic excitation and c...
In this work, we employ vacuum deposited Au nanoparticles (-4 nm) to control the defect density on t...
In this work, we employ vacuum deposited Au nanoparticles (-4 nm) to control the defect density on t...
A sequential hydrothermal process was used to synthesize ZnO nanostructures on Si substrates. The sy...
In this work, the structural, electrical, and optical properties as well as chemical bonding state o...
Zinc oxide is a versatile semiconductor with an expansive range of applications including lighting, ...