DocumentCode :
3216205
Title :
Surface-conducted field emission lamp with ZnO nanotetrapod and magnesium oxide composite emitter
Author :
Ke Qu ; Xiaobo Zhu ; Chi Li ; Kai Hou ; Xiaxi Yang ; Wei Lei ; Xiaobing Zhang ; Baoping Wang
Author_Institution :
Display R&D center, Southeast Univ., Nanjing, China
fYear :
2010
fDate :
14-16 Oct. 2010
Firstpage :
546
Lastpage :
547
Abstract :
With all the advantages of the FED, surface conduction electron emission display (SED), which is developed by the Canon-Toshiba with a 36 inch diagonal, has additional superiorities compared to the foregoing displays as better brightness, power consumption and response time.Surface conduction emission is a planar-triode configuration field emission, which refers to electron emission from a roughed emitter-film that locates between the gate electrode and cathode electrode. When a voltage is applied between the gate and cathode, there is current flow in the emitter-layer, where electrons can be easily scattered and extracted by the counter anode. As the Canon-Toshiba described the surface-conducted field emission cathode for surface conduction electron emission display (SED) is formed by application of applying PdO thin films produced by an ink -jet process on a glass substrate. The nanogap which is crucial in the electron emission is fabricated across the PdO films. However, surface-conduction emission display (SED) has great promise for a number of applications, the electron beams formed by these devices are poorly utilized which limits their use for certain applications. This article describes an approach to promoting the emission efficiency and anode current by using a composite emitter.
Keywords :
electron emission; field emission displays; surface conductivity; PdO thin films; ZnO nanotetrapod; brightness; cathode electrode; gate electrode; glass substrate; ink-jet process; magnesium oxide composite emitter; planar-triode configuration field emission; power consumption; response time; roughed emitter-film; surface conduction electron emission display; surface conduction emission; surface-conducted field emission cathode; surface-conducted field emission lamp; surface-conduction emission display;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Vacuum Electron Sources Conference and Nanocarbon (IVESC), 2010 8th International
Conference_Location :
Nanjing
Print_ISBN :
978-1-4244-6645-0
Type :
conf
DOI :
10.1109/IVESC.2010.5644203
Filename :
5644203
Link To Document :
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