Zinc oxide nanopencil arrays were synthesized on pyramidal Si( 1 0 0) substrates via a simple thermal evaporation method. Their field emission properties have been investigated: the turn-on electric field (at the current density of 10 mu A/cm(2)) was about 3.8 V/mu m, and the threshold electric field (at the current density of 1 mA/cm(2)) was 5.8 V/mu m. Compared with similar structures grown on. at Si substrates, which were made as references, the pyramidal Si-based ZnO nanopencil arrays appeared to be superior in field emission performance, thus the importance of the non-flat substrates has been accentuated. The pyramidal Si substrates could not only suppress the field screening effect but also improve the field enhancement effect during ...
One-dimensional ZnO nanopillars of diameter 80-120 nm and two-dimensional nanowalls of thickness 100...
Well-aligned zinc oxide nanorods with different morphologies were fabricated on silicon substrates v...
Unoriented ZnO nanowires are fabricated either on the surface of silicon wafer or at the tip of need...
An array of random-oriented zinc oxide nanowires (ZnO NWs) was fabricated on silicon substrate by th...
Two kinds of novel ZnO pyramid arrays with nanorods were synthesized by a simple pressure controlled...
An array of non-aligned monocrystalline zinc oxide nanowires (ZnO NWs) is fabricated on a silicon su...
Field emission from zinc oxide (ZnO) nanowires grown by directly heating brass Substrate in air was ...
Two kinds of vertically aligned, well-ordered zinc oxide nanoneedle arrays were synthesized on silic...
Arrays of novel nanometer-scale tower-shaped structures of zinc oxide (ZnO nanotowers) were synthesi...
The authors investigated the field emission from vertically well-aligned zinc oxide (ZnO) nanoneedle...
Arrays of randomly oriented zinc oxide (ZnO) nanowires were fabricated on silicon wafers via a simpl...
Arrays of zinc oxide (ZnO) nanowires and nanobelts were synthesized by the thermal evaporation of mi...
Randomly oriented zinc oxide (ZnO) nanowires with different diameters were synthesized on a large sc...
Novel lotiform ZnO nanostructures were synthesized on silicon substrate via simple thermal evaporati...
Compared with other field-emission nanomaterials, 1D ZnO nanomaterials have some unique properties—s...
One-dimensional ZnO nanopillars of diameter 80-120 nm and two-dimensional nanowalls of thickness 100...
Well-aligned zinc oxide nanorods with different morphologies were fabricated on silicon substrates v...
Unoriented ZnO nanowires are fabricated either on the surface of silicon wafer or at the tip of need...
An array of random-oriented zinc oxide nanowires (ZnO NWs) was fabricated on silicon substrate by th...
Two kinds of novel ZnO pyramid arrays with nanorods were synthesized by a simple pressure controlled...
An array of non-aligned monocrystalline zinc oxide nanowires (ZnO NWs) is fabricated on a silicon su...
Field emission from zinc oxide (ZnO) nanowires grown by directly heating brass Substrate in air was ...
Two kinds of vertically aligned, well-ordered zinc oxide nanoneedle arrays were synthesized on silic...
Arrays of novel nanometer-scale tower-shaped structures of zinc oxide (ZnO nanotowers) were synthesi...
The authors investigated the field emission from vertically well-aligned zinc oxide (ZnO) nanoneedle...
Arrays of randomly oriented zinc oxide (ZnO) nanowires were fabricated on silicon wafers via a simpl...
Arrays of zinc oxide (ZnO) nanowires and nanobelts were synthesized by the thermal evaporation of mi...
Randomly oriented zinc oxide (ZnO) nanowires with different diameters were synthesized on a large sc...
Novel lotiform ZnO nanostructures were synthesized on silicon substrate via simple thermal evaporati...
Compared with other field-emission nanomaterials, 1D ZnO nanomaterials have some unique properties—s...
One-dimensional ZnO nanopillars of diameter 80-120 nm and two-dimensional nanowalls of thickness 100...
Well-aligned zinc oxide nanorods with different morphologies were fabricated on silicon substrates v...
Unoriented ZnO nanowires are fabricated either on the surface of silicon wafer or at the tip of need...