ZnO nanorods have been grown by two inexpensive, solution-based, low-temperature methods: hydrothermal growth and electrodeposition. Heterojunction n-ZnO nanorods/p-GaN light-emitting diodes have been studied for different nanorod growth methods and different preparation of the seed layer. We demonstrate that both the nanorod properties and the device performance are strongly dependent on the growth method and seed layer. All the devices exhibit light emission under both forward and reverse bias, and the emission spectra can be tuned by ZnO nanorod deposition conditions. Electrodeposition of rods or a seed layer results in yellow emission, while conventional hydrothermal growth results in violet emission.Department of Electronic and Informa...
Zinc oxide nanorods have great potential for the realization of high efficiency heterostructure LEDs...
Zinc oxide (ZnO) has been attractive for optoelectronics application due to its wide band gap (Eg=3....
Zinc oxide is a very promising material for short-wavelength light-emitting devices due to its large...
ZnO nanorods have been grown by two inexpensive, solution-based, low-temperature methods: hydrotherm...
Zinc oxide (ZnO) nanorods are of great interest due to their potential use in optoelectronic devices...
Hydrothermal synthesis and electrodeposition are low-temperature and cost-effective growth technique...
Hydrothermal synthesis and electrodeposition are low-temperature and cost-effective growth technique...
In this work solution growth technique as well as electrodepostion technique was employed to directl...
A way to grow and characterize isolated and coalesced ZnO nanorods on p-GaN/sapphire structure is pr...
A way to grow and characterize isolated and coalesced ZnO nanorods on p-GaN/sapphire structure is pr...
We investigated the influence of the growth method, growth conditions, and post-growth treatments on...
Aqueous solution synthesis of ZnO nanorods on p-GaN(0001) is a low-temperature (\u3c 100 °C) and cos...
Zinc oxide nanorods have great potential for the realization of high efficiency heterostructure LEDs...
Aqueous solution synthesis of ZnO nanorods on p-GaN(0001) is a low-temperature (\u3c 100 °C) and cos...
Zinc oxide is a very promising material for short-wavelength light-emitting devices due to its large...
Zinc oxide nanorods have great potential for the realization of high efficiency heterostructure LEDs...
Zinc oxide (ZnO) has been attractive for optoelectronics application due to its wide band gap (Eg=3....
Zinc oxide is a very promising material for short-wavelength light-emitting devices due to its large...
ZnO nanorods have been grown by two inexpensive, solution-based, low-temperature methods: hydrotherm...
Zinc oxide (ZnO) nanorods are of great interest due to their potential use in optoelectronic devices...
Hydrothermal synthesis and electrodeposition are low-temperature and cost-effective growth technique...
Hydrothermal synthesis and electrodeposition are low-temperature and cost-effective growth technique...
In this work solution growth technique as well as electrodepostion technique was employed to directl...
A way to grow and characterize isolated and coalesced ZnO nanorods on p-GaN/sapphire structure is pr...
A way to grow and characterize isolated and coalesced ZnO nanorods on p-GaN/sapphire structure is pr...
We investigated the influence of the growth method, growth conditions, and post-growth treatments on...
Aqueous solution synthesis of ZnO nanorods on p-GaN(0001) is a low-temperature (\u3c 100 °C) and cos...
Zinc oxide nanorods have great potential for the realization of high efficiency heterostructure LEDs...
Aqueous solution synthesis of ZnO nanorods on p-GaN(0001) is a low-temperature (\u3c 100 °C) and cos...
Zinc oxide is a very promising material for short-wavelength light-emitting devices due to its large...
Zinc oxide nanorods have great potential for the realization of high efficiency heterostructure LEDs...
Zinc oxide (ZnO) has been attractive for optoelectronics application due to its wide band gap (Eg=3....
Zinc oxide is a very promising material for short-wavelength light-emitting devices due to its large...