EP1324366A2

Electron emitting device, electron source and image display device and methods of manufacturing these devices

Abstract

The present invention provides an electron emitting device including electrodes (2,3) disposed with a space therebetween on a surface of a substrate (1), a carbon film (4') disposed between the electrodes and connected to one of the electrodes, and a gap (5) disposed between the carbon film and the other electrode. In the gap, the distance between the edge of the carbon film connected to one of the electrode and the edge of the other electrode at an upper position apart from the surface of the substrate is smaller than that at the surface of the substrate. The present invention also provides an electron source and an image display device each including the electron emitting device.

EP1324366A2, drawing sheet 1
Sheet 1 of 40

Term

Term ended

Projected expiry passed 18 December 2022, 3.8 years ago.

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49 claims: 16 independent, 33 dependent

  1. 1
    An electron-emitting device comprising:(A) first and second electrodes separated by a space and disposed on a surface of a substrate;(B) a carbon film disposed between the first and second electrodes on the surface of the substrate, and connected to the second electrode;and (C) a gap defined between the first electrode and the carbon film connected to the second electrode;wherein within the gap, a space between a surface of the carbon film and a surface of the first electrode at an upper position apart from the surface of the substrate is smaller than that at the surface of the substrate, and    the surface of the first electrode is partially exposed in the gap.
  2. 5
    An electron-emitting device comprising:(A) first and second electrodes disposed on a surface of a substrate;and (B) a carbon film having a gap and disposed between the first and second electrodes on the surface of the substrate so that a first portion of the carbon film covers a portion of the first electrode, and a second portion of the carbon film covers a portion of the second electrode,    wherein a part of a surface of the first electrode is exposed in the gap, and    a width of the gap at an upper position apart from the surface of the substrate is smaller than that at the surface of the substrate.
  3. 7
    An electron-emitting device according comprising:(A) first and second electrodes disposed with a space therebetween on a surface of a substrate;and (B) a carbon film disposed between the first and second electrodes on the surface of the substrate so that one end portion of the carbon film covers a portion of the second electrode,    wherein a gap is at least partially defined by the other end portion of the carbon film and the first electrode.
  4. 12
    An electron-emitting device comprising:(A) first and second electrodes disposed on a surface of a substrate;and (B) a carbon film having a gap and disposed between the first and second electrodes on the surface of the substrate so that one end of the carbon film covers a portion of the first electrode, and the other end of the carbon film covers a portion of the second electrode,    wherein at least part of a surface of the first electrode is exposed in the gap.
  5. 14
    An electron-emitting device comprising:(A) first and second electrodes disposed on a surface of a substrate;and (B) a carbon film disposed between the first and second electrodes on the surface of the substrate so that one end portion of the carbon film covers a portion of the second electrode;wherein another end portion of the carbon film faces the first electrode with a space interposed therebetween.
  6. 26
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes and a polymer film for connecting the electrodes on a substrate;(B) decreasing a resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein step (C) comprises supplying a current, through the pair of electrodes, to the film obtained by decreasing the resistance of the polymer film so that the Joule heat generated near an end of one of the electrodes is higher than Joule heat generated near an end of another one of the electrodes.
  7. 27
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes and a polymer film for connecting the electrodes on a substrate so that a contact resistance between one of the electrodes and the polymer film is different from the contact resistance between another one of the electrodes and the polymer film;(B) decreasing a resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the gap is formed by supplying a current, through the pair of electrodes, to the film obtained by decreasing the resistance of the polymer film.
  8. 28
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming, on a substrate, a pair of electrodes and a polymer film for connecting the electrodes by covering a portion of each of the electrodes;(B) decreasing a resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the polymer film is formed so that a step coverage of a portion which partially covers one of the electrodes is different from a step coverage of a portion which partially covers another one of the electrodes;and    the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  9. 29
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes and a polymer film for connecting the electrodes, on a substrate, so that a configuration of one of the electrodes and the polymer film is different from a configuration of another one of the electrodes and the polymer film;(B) decreasing a resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  10. 30
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes having different shapes, and a polymer film for connecting the electrodes on a substrate;(B) decreasing a resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  11. 31
    A method of manufacturing an electron-emitting device according to any one of Claims 26, 29, and 30, wherein the pair of electrodes are formed in different sizes.
  12. 34
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes comprising different materials, and a polymer film for connecting the electrodes on a substrate;(B) decreasing a resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  13. 35
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes having different surface energies on a substrate;(B) forming a polymer film for connecting the electrodes disposed on the substrate;(C) decreasing a resistance of the polymer film;and (D) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the polymer film for connecting the electrodes is formed by coating the substrate with a solution of a polymer constituting the polymer film or a solution of a precursor of the polymer, and then heating the substrate with the solution coated thereon, and    wherein the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  14. 36
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes having different compositions on a substrate;(B) forming a polymer film for connecting the electrodes disposed on the substrate;(C) decreasing a resistance of the polymer film;and (D) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the polymer film for connecting the electrodes is formed by coating the substrate with a solution of a polymer constituting the polymer film or a solution of a precursor of the polymer, and then heating the substrate with the solution coated thereon, and    wherein the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  15. 39
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes and a polymer film for connecting the electrodes on a substrate so that a connection length between one of the electrodes and the polymer film is different in length from a connection length between the other electrode and the polymer film;(B) decreasing the resistance of the polymer film;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film;wherein the gap is formed by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
  16. 42
    A method of manufacturing an electron-emitting device, comprising the steps of:(A) forming a pair of electrodes and a polymer film for connecting the electrodes on a substrate;(B) decreasing a resistance of the polymer film so that the resistance of a portion of the polymer film near one of the electrodes is lower than the resistance of another portion of the polymer film near another one of the electrodes;and (C) forming a gap in a film obtained by decreasing the resistance of the polymer film by supplying, through the pair of electrodes, a current to the film obtained by decreasing the resistance of the polymer film.
Independent claims16