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The synthesis and the growth mechanism of MoO3 nanostructures have been investigated. However, it remains a challenge to develop an industrial approach to prepare a large-area film of MoO3 nanostructures in a control manner. Such a film may be used to construct flat-panel displays, photoelectrochromic ldquosmartrdquo window etc. Many synthesis methods reported so far require vacuum conditions and/or...
Field emission display (FED) is a promising candidate for next generation flat panel display due to its advantages of fast response, high brightness, high contrast and low power consumption. Dielectric spacers are key components in a FED device, which support and insulate cathode and anode substrates. In this study the effects of spacer charging on the display image was studied in a FED with high...
Field emission display (FED) is a promising flat display technology and is considered to be the most suitable substitute for cathode ray tube (CRT). Using arrays of cold cathode to replace the electron guns in CRT, FED inherits the high display quality of CRT in Itoh, S., et al (2004). In order to achieve the high performances of full-color and low working voltage, gate-structured FED have been developed,...
A high brightness flat panel lighting element with a triode structure had been fabricated using carbon nanotube cold cathode. The maximum luminance of 110,000 cd/m2 in green was observed at the anode voltage of 10 kV and the cathode current density of 200 muA/cm2, and the stable luminance of 60,000 cd/m2 were also achieved
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