2001Journal of Vacuum Science & Technology B Microelectronics and Nanometer Structures Processing Measurement and PhenomenaRequires access

High-voltage triode flat-panel display using field-emission nanotube-based thin films

N. S. Xu, Ziyi Wu, Shaozhi Deng, Jun Chen

Open publisher page 30 citations

Abstract

An experimental dismountable high-voltage field-emission display has been fabricated. It is used to demonstrate that gated structures may be adapted to the case where flat-film emitters are made of a carbon-nanotube–epoxy composite. Experiments have been carried out to study the field electron emission characteristics of the display unit and to optimize the structural parameters. Our findings indicate that it is very likely for one to produce a near-market prototype high-voltage field-emission display, if a more sophisticated fabrication and assembly technique is adapted.

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What this paper is about

An experimental dismountable high-voltage field-emission display has been fabricated. It is used to demonstrate that gated structures may be adapted to the case where flat-film emitters are made of a carbon-nanotube–epoxy composite. Experiments have been carried out to study the field electron emission characteristics of the display unit and to optimize the structural parameters. Our findings indicate that it is very likely for one to produce a near-market prototype high-voltage field-emission display, if a more sophisticated fabrication and assembly technique is adapted.

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Available abstract

An experimental dismountable high-voltage field-emission display has been fabricated. It is used to demonstrate that gated structures may be adapted to the case where flat-film emitters are made of a carbon-nanotube–epoxy composite. Experiments have been carried out to study the field electron emission characteristics of the display unit and to optimize the structural parameters. Our findings indicate that it is very likely for one to produce a near-market prototype high-voltage field-emission display, if a more sophisticated fabrication and assembly technique is adapted.

Key concepts: Triode, Field emission display, Field electron emission, Flat panel display, Carbon nanotube, Materials science, Voltage, Optoelectronics

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