EP0803890A1

Method of manifacturing electron emitting device, electron source and image-forming apparatus using the same

Abstract

A surface conduction electron-emitting device has an electroconductive film including an electron-emitting region between a pair of electrode on a substrate. The electroconductive film is formed by producing a precursor film of an organic metal compound or complex thereof and then turning the precursor film into the electroconductive film by keeping the temperature of the film above the decomposition temperature of the organic metal compound or the complex thereof and applying a voltage to the film. A plurality of such electron-emitting devices are arranged on a substrate in a matrix or ladder-like manner to constitute an electron source. Such an electron source is used with an image-forming member disposed vis-a-vis the electron source to form an image-forming member.

EP0803890A1, drawing sheet 1
Sheet 1 of 18

Term

Term ended

Projected expiry passed 25 April 2017, 9.4 years ago.

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15 claims: 7 independent, 8 dependent

  1. 1
    A method of manufacturing an electron-emitting device having an electroconductive film including an electron-emitting region and a pair of device electrodes disposed opposite to each other and electrically connected to the electroconductive film, characterized in that it comprises steps of:(a) producing a film of an organic metal compound or a complex thereof as a precursor of the material of the electroconductive film to link the device electrodes;and (b) turning the film of the organic metal compound or the complex thereof, whichever appropriate, into an electroconductive film including an electron-emitting region by keeping the temperature of the film above the decomposition temperature of the organic metal compound or the complex thereof and applying a voltage to the film of the organic metal compound or the complex thereof by way of the device electrodes.
  2. 2
    A method of manufacturing an electron-emitting device having an electroconductive film including an electron-emitting region and a pair of device electrodes disposed opposite to each other and electrically connected to the electroconductive film, characterized in that it comprises steps of:forming a first electroconductive film;forming a fissure in part of the first electroconductive film, subsequently producing a film of an organic metal compound or a complex thereof on the first electroconductive film;and turning the film of the organic metal compound of the complex thereof, whichever appropriate, into a second electroconductive film including an electron-emitting region by keeping the temperature of the film above the decomposition temperature of the organic metal compound or the complex thereof and applying a voltage to the film of the organic metal compound or the complex thereof by way of the device electrodes.
  3. 4
    A method of manufacturing an electron-emitting device having an electroconductive film including an electron-emitting region and a pair of device electrodes disposed opposite to each other and electrically connected to the electroconductive film, characterized in that it comprises steps of:forming at least a pair of device electrodes;forming a film of an organic metal compound or a complex thereof;and electrically energizing and baking the film of the organic metal compound or the complex thereof and subjecting the film to an activation process.
  4. 8
    A method of manufacturing an electron source comprising a plurality of electron-emitting devices arranged on a substrate, each having an electroconductive film including an electron-emitting region and a pair of device electrodes disposed opposite to each other and electrically connected to the electroconductive film, characterized in that the electron-emitting devices are prepared by means of a method of manufacturing an electron-emitting device according to any of claims 1 through 7.
  5. 10
    An electron-emitting device comprising an electroconductive film including an electron-emitting region, a pair of device electrodes disposed opposite to each other and electrically connected to the electroconductive film and a coating film containing carbon as principal ingredient and covering the electron-emitting region, characterized in that the electric resistance of the electroconductive film does not irreversibly increase if its temperature is raised from room temperature to 500°C.
  6. 12
    An electron-emitting device according to the invention and comprising an electroconductive film including an electron-emitting region, a pair of device electrodes disposed opposite to each other and electrically connected to the electroconductive film and a coating film containing carbon as principal ingredient and covering the electron-emitting region, characterized in that the electric resistance of the film laminate does not irreversibly increase if its temperature is raised from room temperature to 500°C.
  7. 14
    An electron source characterized in that it comprises electron-emitting devices according to any of claims 10 through 13 and wires for connecting them arranged on a substrate.