Stable field emission is realized from well-separated tetrapod-like ZnO nanostructures with high purity. The ZnO nanostructures are painted on a highly doped silicon substrate covered by a Au layer with a thickness of 300 nm. An emission current density of 18 mA/cm(2) is obtained and degradation was not observed over a three day period. The fluctuations of the emission current are less than 2%. These experimental results indicate that tetrapod-like ZnO nanostructures are promising materials as cold cathodes for mass production. (C) 2004 American Institute of Physics.Physics, AppliedSCI(E)EI0ARTICLE4636-6388
One-dimensional ZnO nanopillars of diameter 80-120 nm and two-dimensional nanowalls of thickness 100...
A novel microwave plasma assisted by tube furnace heating system is designed to grow tetrapod ZnO na...
Well-aligned arrays of ZnO nanoneedles were fabricated using a simple vapor phase growth. The diamet...
Arrays of zinc oxide (ZnO) nanowires and nanobelts were synthesized by the thermal evaporation of mi...
Compared with other field-emission nanomaterials, 1D ZnO nanomaterials have some unique properties—s...
Well-aligned zinc oxide nanorods with different morphologies were fabricated on silicon substrates v...
Novel lotiform ZnO nanostructures were synthesized on silicon substrate via simple thermal evaporati...
Abstract: ZnO nanostructures with tetrapod, needle and multipod shapes were synthesized without cat...
A facile method to produce high-quality ZnO nanostructures; either tetrapod (TP), nanotetraneedle (N...
Zinc oxide is an important group II-VI semiconductor material with optical properties that permit st...
The field emission property of cold cathode emitters utilizing the ZnO nanowires with various condit...
ZnO nanostructures with different morphologies e.g. nanotetrapods, nanorods, nanocombs and nanoaerop...
Arrays of randomly oriented zinc oxide (ZnO) nanowires were fabricated on silicon wafers via a simpl...
A cold cathode has many applications in high frequency and high power electronic devices, X-ray sour...
Tetrapod ZnO nanostructures with three different morphologies (rod-wire junction, dumbbell-like and ...
One-dimensional ZnO nanopillars of diameter 80-120 nm and two-dimensional nanowalls of thickness 100...
A novel microwave plasma assisted by tube furnace heating system is designed to grow tetrapod ZnO na...
Well-aligned arrays of ZnO nanoneedles were fabricated using a simple vapor phase growth. The diamet...
Arrays of zinc oxide (ZnO) nanowires and nanobelts were synthesized by the thermal evaporation of mi...
Compared with other field-emission nanomaterials, 1D ZnO nanomaterials have some unique properties—s...
Well-aligned zinc oxide nanorods with different morphologies were fabricated on silicon substrates v...
Novel lotiform ZnO nanostructures were synthesized on silicon substrate via simple thermal evaporati...
Abstract: ZnO nanostructures with tetrapod, needle and multipod shapes were synthesized without cat...
A facile method to produce high-quality ZnO nanostructures; either tetrapod (TP), nanotetraneedle (N...
Zinc oxide is an important group II-VI semiconductor material with optical properties that permit st...
The field emission property of cold cathode emitters utilizing the ZnO nanowires with various condit...
ZnO nanostructures with different morphologies e.g. nanotetrapods, nanorods, nanocombs and nanoaerop...
Arrays of randomly oriented zinc oxide (ZnO) nanowires were fabricated on silicon wafers via a simpl...
A cold cathode has many applications in high frequency and high power electronic devices, X-ray sour...
Tetrapod ZnO nanostructures with three different morphologies (rod-wire junction, dumbbell-like and ...
One-dimensional ZnO nanopillars of diameter 80-120 nm and two-dimensional nanowalls of thickness 100...
A novel microwave plasma assisted by tube furnace heating system is designed to grow tetrapod ZnO na...
Well-aligned arrays of ZnO nanoneedles were fabricated using a simple vapor phase growth. The diamet...