EP2400531A2

Diamond semiconductor element and process for producing the same

Abstract

A p-type diamond semiconductor, characterized by comprising, as a dopant element, any of the elements, Al, Be, Ca, Cd, Ga, In, Li, Mg and Zn is disclosed.

EP2400531A2, drawing sheet 1
Sheet 1 of 61

Term

Term ended

Projected expiry passed 20 June 2026, 0.3 years ago.

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19 claims: 8 independent, 11 dependent

  1. 1
    A p-type diamond semiconductor, characterized by comprising, as a dopant element, any of the elements, Al, Be, Ca, Cd, Ga, In, Li, Mg and Zn.
  2. 4
    A process for producing a p-type diamond semiconductor, characterized in that a diamond is doped with any of the elements Al, Be, Ca, Cd, Ga, In, Li, Mg and Zn by ultra-high-temperature and high-pressure synthesis, or by ion implantation.
  3. 5
    A process for producing a p-type diamond semiconductor, characterized in that a p-type diamond semiconductor film is grown, by a chemical vapor deposition (CVD) technique, on a diamond substrate from a source gas including, at least, a gas that includes carbon (C) and a dopant gas in which:the ratio of the number of Al atoms to the number of C atoms (Al/C) is no less than 0.26ppm and no more than 10 4 ppm, or the ratio of the number of Be atoms to the number of C atoms (Be/C) is no less than 0.13ppm and no more than 10 4 ppm, or the ratio of the number of Ca atoms to the number of C atoms (Ca/C) is no less than 0.32ppm and no more than 10 4 ppm, or the ratio of the number of Cd atoms to the number of C atoms (Cd/C) is no less than 0.064ppm and no more than 10 4 ppm, or the ratio of the number of Ga atoms to the number of C atoms (Ga/C) is no less than 0.081ppm and no more than 10 4 ppm, or the ratio of the number of In atoms to the number of C atoms (In/C) is no less than 0.051ppm and no more than 10 4 ppm, or the ratio of the number of Li atoms to the number of C atoms (Li/C) is no less than 3.0ppm and no more than 10 4 ppm, or the ratio of the number of Mg atoms to the number of C atoms (Mg/C) is no less than 1.0ppm and no more than 10 4 ppm, or the ratio of the number of Zn atoms to the number of C atoms (Zn/C) is no less than 0.16ppm and no more than 10 4 ppm.
  4. 15
    An MESFET, characterized by comprising:a diamond substrate;the p-type diamond semiconductor layer, described in any of claims 1 to 3, formed on said diamond substrate;a source electrode and a drain electrode formed on said p-type diamond semiconductor layer at a distance from each other;and a gate electrode formed between said source electrode and drain electrode on said p-type diamond semiconductor layer.
  5. 16
    An MISFET, characterized by comprising:a diamond substrate;the p-type diamond semiconductor layer, described in any of claims 1 to 3, formed on said diamond substrate;a source electrode and a drain electrode formed on said p-type diamond semiconductor layer at a distance from each other;an insulating layer formed between said metal electrodes on said p-type diamond semiconductor layer: and a gate electrode formed on said insulating layer.
  6. 17
    An npn-type bipolar transistor, characterized by comprising:a diamond substrate;a first n-type diamond semiconductor layer formed on said diamond substrate;the first p-type diamond semiconductor layer, described in any of claims 1 to 3, and a first metal electrode that are formed on said first n-type diamond semiconductor layer at a distance from each other;a second n-type diamond semiconductor layer and a second metal electrode that are formed on said p-type diamond semiconductor layer at a distance from each other;and a third metal electrode formed on said second n-type diamond semiconductor layer.
  7. 18
    A pnp-type bipolar transistor, characterized by comprising:a diamond substrate;the first p-type diamond semiconductor layer, described in any of claims 1 to 3, formed on said diamond substrate;an n-type diamond semiconductor layer and a first electrode that are formed on said first p-type diamond semiconductor layer at a distance from each other;the second p-type diamond semiconductor layer, described in any of claims 1 to 3 and formed on said diamond substrate, and a second electrode that are formed on said n-type diamond semiconductor layer at a distance from each other;and a third electrode formed on said second p-type diamond semiconductor layer.
  8. 19
    An LED, characterized by comprising:a diamond substrate;the p-type diamond semiconductor layer, described in any of claims 1 to 3, formed on said diamond substrate;an n-type diamond semiconductor layer and an anode electrode that are formed on said p-type diamond semiconductor layer at a distance from each other;and a cathode electrode formed on said n-type diamond semiconductor layer.