A novel microwave plasma assisted by tube furnace heating system is designed to grow tetrapod ZnO nanostructures. Under optimal reaction conditions, Zn powder is oxidated to form the tetrapod ZnO with straight and uniform four legs (nanorods), bearing diameters ranging from 10 to 25 nm and lengths up to 160 nm. High-resolution transmission electron microscopy analyses reveals that the tetrapod ZnO nanostructures are perfect crystalloid. High spatial resolution cathodoluminescent spectrum for individual tetrapod ZnO nanostructure shows only a strong ultraviolet emission at 385 nm. (C) 2003 Elsevier Science (USA). All rights reserved
ZnO has received considerable attention because of its unique optical, piezoelectric, and magnetic p...
this paper, ZnO nanorods with high yields were successfully synthesized using a radio frequency (RF)...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
ZnO tetrapods have been grown by sublimation process employing thermal evaporation at 950 °C on quar...
Abstract: ZnO nanostructures with tetrapod, needle and multipod shapes were synthesized without cat...
Tetrapod ZnO nanostructures with three different morphologies (rod-wire junction, dumbbell-like and ...
Stable field emission is realized from well-separated tetrapod-like ZnO nanostructures with high pur...
Zinc oxide is an important group II-VI semiconductor material with optical properties that permit st...
Abstract—ZnO tetrapods have been grown by an environmental microwave evaporation approach in air atm...
Morphology-controlled growth of ZnO nano- and microstructures was achieved by microwave irradiation....
In this work, we report a simple method for mass production of ZnO tetrapod nanorods. A mixture of Z...
The subject of this thesis is microwave assisted rapid growth of ZnO nanoparticles from an aqueous s...
Zinc oxide (ZnO) is a well-known II-VI semiconductor material that has gained renewed interest in th...
Large quantities of single-crystalline ZnO nanorods and nanotubes have been prepared by the microwav...
ZnO nanostructures were synthesized using two different routes and the light sensor response of stru...
ZnO has received considerable attention because of its unique optical, piezoelectric, and magnetic p...
this paper, ZnO nanorods with high yields were successfully synthesized using a radio frequency (RF)...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...
ZnO tetrapods have been grown by sublimation process employing thermal evaporation at 950 °C on quar...
Abstract: ZnO nanostructures with tetrapod, needle and multipod shapes were synthesized without cat...
Tetrapod ZnO nanostructures with three different morphologies (rod-wire junction, dumbbell-like and ...
Stable field emission is realized from well-separated tetrapod-like ZnO nanostructures with high pur...
Zinc oxide is an important group II-VI semiconductor material with optical properties that permit st...
Abstract—ZnO tetrapods have been grown by an environmental microwave evaporation approach in air atm...
Morphology-controlled growth of ZnO nano- and microstructures was achieved by microwave irradiation....
In this work, we report a simple method for mass production of ZnO tetrapod nanorods. A mixture of Z...
The subject of this thesis is microwave assisted rapid growth of ZnO nanoparticles from an aqueous s...
Zinc oxide (ZnO) is a well-known II-VI semiconductor material that has gained renewed interest in th...
Large quantities of single-crystalline ZnO nanorods and nanotubes have been prepared by the microwav...
ZnO nanostructures were synthesized using two different routes and the light sensor response of stru...
ZnO has received considerable attention because of its unique optical, piezoelectric, and magnetic p...
this paper, ZnO nanorods with high yields were successfully synthesized using a radio frequency (RF)...
Growth of freestanding nano- and microstructures with complex morphologies is a highly desired aspec...